WO2024032308A1 - Ta传输的方法及装置 - Google Patents
Ta传输的方法及装置 Download PDFInfo
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- WO2024032308A1 WO2024032308A1 PCT/CN2023/106936 CN2023106936W WO2024032308A1 WO 2024032308 A1 WO2024032308 A1 WO 2024032308A1 CN 2023106936 W CN2023106936 W CN 2023106936W WO 2024032308 A1 WO2024032308 A1 WO 2024032308A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/02—Arrangements for optimising operational condition
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access
- H04W74/08—Non-scheduled access, e.g. ALOHA
- H04W74/0833—Random access procedures, e.g. with 4-step access
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W16/00—Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
- H04W16/24—Cell structures
- H04W16/28—Cell structures using beam steering
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/08—Testing, supervising or monitoring using real traffic
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/10—Scheduling measurement reports ; Arrangements for measurement reports
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/0005—Control or signalling for completing the hand-off
- H04W36/0055—Transmission or use of information for re-establishing the radio link
- H04W36/0064—Transmission or use of information for re-establishing the radio link of control information between different access points
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W56/00—Synchronisation arrangements
- H04W56/001—Synchronization between nodes
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W56/00—Synchronisation arrangements
- H04W56/004—Synchronisation arrangements compensating for timing error of reception due to propagation delay
- H04W56/0045—Synchronisation arrangements compensating for timing error of reception due to propagation delay compensating for timing error by altering transmission time
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/0005—Control or signalling for completing the hand-off
- H04W36/0055—Transmission or use of information for re-establishing the radio link
- H04W36/0072—Transmission or use of information for re-establishing the radio link of resource information of target access point
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/08—Access point devices
- H04W88/085—Access point devices with remote components
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W92/00—Interfaces specially adapted for wireless communication networks
- H04W92/16—Interfaces between hierarchically similar devices
- H04W92/24—Interfaces between hierarchically similar devices between backbone network devices
Definitions
- the present disclosure relates to the field of communication technology, and in particular, to a TA transmission method and device.
- the change and/or addition of the serving cell is triggered by the L1 or L2 command, and when the timing advance (Timing Advance, TA) is measured, it is usually triggered by the distributed unit (Distributed Unit, DU) provides uplink resource configuration for the terminal, and sends the uplink resource configuration to the terminal (User Equipment, UE) via the Centralized Unit (CU) by sending a Radio Resource Control (RRC) message, and the terminal applies the configuration information Initiating random access, DU detects the uplink signal or preamble (Preamble) of the UE during the random access process and then calculates TA.
- the target DU and candidate DU obtain the TA value corresponding to the terminal and cannot transmit it to the DU currently providing services to the terminal, they cannot inform the terminal through the service DU, which increases the delay of L1 and L2 mobility.
- Embodiments of the present disclosure provide a TA transmission method and device to solve the problem that there is no TA transmission between DU and CU in the relevant mechanism, resulting in the need to perform switching and/or addition of serving cells based on L1 and L2. Random access obtains TA simultaneously, resulting in a large delay problem.
- embodiments of the present disclosure provide a TA transmission method, which is applied to candidate DUs, including:
- the first message carries the TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the first message includes one or more of the following:
- the identification information of the first candidate cell is the identification information of the first candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the first candidate cell is the TA value corresponding to the first candidate cell.
- the first message includes one or more of the following:
- the identification information of the designated candidate cell is the identification information of the designated candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the designated candidate cell is the TA value corresponding to the designated candidate cell.
- the method before sending the first message to the target CU, the method includes:
- the reporting configuration message is used to configure the candidate Select DU to report the reporting rules of the TA value corresponding to the target terminal in the designated candidate cell;
- the target CU Receives a first request message sent by the target CU.
- the first request message is used to obtain the first TA value determined by the candidate DU from the candidate DU.
- the first TA value is the target terminal in the designated candidate cell. The corresponding TA value.
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the identification information of the first candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the identification information of the designated candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the indication information of the uplink signal beam includes one or more of the following:
- the beam index of the uplink signal beam is the beam index of the uplink signal beam
- the transmission configuration indication index of the uplink signal beam
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores different measurement value intervals included in the TA value and the index corresponding to each of the measurement value intervals.
- the first message is an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- embodiments of the present disclosure also provide a TA transmission method, which is applied to serving DU, including:
- the designated candidate cell is one or more of the first candidate cells; the first candidate cell is the candidate cell corresponding to the candidate DU; and the target CU stores the first TA values determined by all the candidate DUs.
- the second request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the identification information of the designated candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the second request message is sent through an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- embodiments of the present disclosure also provide a TA transmission method, applied to the target CU, including:
- the first message carries the TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the method when the first message carries the TA value corresponding to the target terminal in the designated candidate cell, before receiving the first message sent by the candidate DU, the method includes:
- reporting configuration message Send a reporting configuration message to the candidate DU, where the reporting configuration message is used to configure the reporting rule for the candidate DU to report the TA value corresponding to the target terminal in the first candidate cell;
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the designated candidate cell is determined based on the identification information of the designated candidate cell.
- the identification information of the designated candidate cell is a customized cell identity, a new air interface cell global identity, a physical cell identity, and a global cell identity code. any of them.
- the first candidate cell is determined based on the identification information of the first candidate cell.
- the identification information of the first candidate cell is a customized cell identity, a new air interface cell global identity, a physical cell identity, and a global cell identity. Any of the cell identification codes.
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores different measurement value intervals included in the TA value and the index corresponding to each of the measurement value intervals.
- the first message is an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- embodiments of the present disclosure also provide a DU, including a memory, a transceiver, and a processor:
- Memory used to store computer programs
- transceiver used to send and receive data under the control of the processor
- processor used to read the computer program in the memory and perform the following operations:
- the first message carries the TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the first message includes one or more of the following:
- the identification information of the first candidate cell is the identification information of the first candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the first candidate cell is the TA value corresponding to the first candidate cell.
- the first message includes one or more of the following:
- the identification information of the designated candidate cell is the identification information of the designated candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the designated candidate cell is the TA value corresponding to the designated candidate cell.
- the method before sending the first message to the target CU, the method includes:
- the target CU Receives a first request message sent by the target CU.
- the first request message is used to obtain the first TA value determined by the candidate DU from the candidate DU.
- the first TA value is the target terminal in the designated candidate cell. The corresponding TA value.
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal
- the threshold of TA reporting times is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the threshold of the number of TA reporting times, the last TA in the DU measurement and obtained TA value shall be reported. value;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the identification information of the first candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the identification information of the designated candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the indication information of the uplink signal beam includes one or more of the following:
- the beam index of the uplink signal beam is the beam index of the uplink signal beam
- the transmission configuration indication index of the uplink signal beam
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores different measurement value intervals included in the TA value and the index corresponding to each of the measurement value intervals.
- the first message is an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- embodiments of the present disclosure also provide a DU, including a memory, a transceiver, and a processor:
- memory for storing computer programs; a transceiver for receiving data under the control of the processor Send data; processor to read the computer program in the memory and perform the following operations:
- the designated candidate cell is one or more of the first candidate cells; the first candidate cell is the candidate cell corresponding to the candidate DU; and the target CU stores the first TA values determined by all the candidate DUs.
- the second request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the identification information of the designated candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the second request message is sent through an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- embodiments of the present disclosure also provide a CU, including a memory, a transceiver, and a processor:
- Memory used to store computer programs
- transceiver used to send and receive data under the control of the processor
- processor used to read the computer program in the memory and perform the following operations:
- the first message carries the TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the first message carries the TA value corresponding to the target terminal in the designated candidate cell.
- the candidate DU before receiving the first message sent by the candidate DU, include:
- reporting configuration message Send a reporting configuration message to the candidate DU, where the reporting configuration message is used to configure the reporting rule for the candidate DU to report the TA value corresponding to the target terminal in the first candidate cell;
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the designated candidate cell is determined based on the identification information of the designated candidate cell.
- the identification information of the designated candidate cell is a customized cell identity, a new air interface cell global identity, a physical cell identity, and a global cell identity code. any of them.
- the first candidate cell is determined based on the identification information of the first candidate cell.
- the identification information of the first candidate cell is a customized cell identity, a new air interface cell global identity, a physical cell identity, and a global cell identity. Any of the cell identification codes.
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores different measurement value intervals included in the TA value and the index corresponding to each of the measurement value intervals.
- the first message is an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- embodiments of the present disclosure also provide a device for TA transmission, which is applied to candidate DUs, including:
- the first sending module is used to send the first message to the target CU;
- the first message carries the TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the first message includes one or more of the following:
- the identification information of the first candidate cell is the identification information of the first candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the first candidate cell is the TA value corresponding to the first candidate cell.
- the first message includes one or more of the following:
- the identification information of the designated candidate cell is the identification information of the designated candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the designated candidate cell is the TA value corresponding to the designated candidate cell.
- the device further includes a first receiving module, used for:
- the first request message is used to obtain the first TA value determined by the candidate DU from the candidate DU.
- the first TA value is the target terminal corresponding to the designated candidate cell. TA value.
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the identification information of the first candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the identification information of the designated candidate cell is a customized cell identification, a new air interface small number Any of zone global identity, physical cell identity, and global cell identity.
- the indication information of the uplink signal beam includes one or more of the following:
- the beam index of the uplink signal beam is the beam index of the uplink signal beam
- the transmission configuration indication index of the uplink signal beam
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores different measurement value intervals included in the TA value and the index corresponding to each of the measurement value intervals.
- the first message is an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- embodiments of the present disclosure also provide a device for TA transmission, which is applied to serving DU, including:
- the second sending module is used to send a second request message to the target CU, and is used to obtain the first TA value determined by the candidate DU, where the first TA value is the TA value corresponding to the target terminal in the designated candidate cell;
- the designated candidate cell is one or more of the first candidate cells; the first candidate cell is the candidate cell corresponding to the candidate DU; and the target CU stores the first TA values determined by all the candidate DUs.
- the second request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the identification information of the designated candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the second request message is sent through an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- embodiments of the present disclosure also provide a device for TA transmission, which is applied to a target CU and includes:
- the third receiving module is used to receive the first message sent by the candidate DU;
- a third determination module configured to determine the TA value corresponding to the target terminal in the first candidate cell based on the first message, or the TA value corresponding to the target terminal in the designated candidate cell;
- the first message carries the TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the device further includes a third sending module, used for:
- reporting configuration message Send a reporting configuration message to the candidate DU, where the reporting configuration message is used to configure the reporting rule for the candidate DU to report the TA value corresponding to the target terminal in the first candidate cell;
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the designated candidate cell is determined based on the identification information of the designated candidate cell.
- the identification information of the designated candidate cell is a customized cell identity, a new air interface cell global identity, a physical cell identity, and a global cell identity code. any of them.
- the first candidate cell is determined based on the identification information of the first candidate cell.
- the identification information of the first candidate cell is a customized cell identity, a new air interface cell global identity, a physical cell identity, and a global cell identity. Any of the cell identification codes.
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores different measurement value intervals included in the TA value and the index corresponding to each of the measurement value intervals.
- the first message is an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- embodiments of the present disclosure further provide a computer-readable storage medium storing a computer program, the computer program being used to cause the computer to perform the TA transmission described in the first aspect.
- an embodiment of the present disclosure further provides a communication device.
- a computer program is stored in the communication device. The computer program is used to cause the communication device to perform the above-described first aspect.
- embodiments of the present disclosure also provide a processor-readable storage medium, the processor-readable storage medium stores a computer program, the computer program is used to cause the processor to execute the above-described first aspect.
- embodiments of the present disclosure also provide a chip product, a computer program is stored in the chip product, and the computer program is used to cause the chip product to perform the TA transmission method described in the first aspect, Or perform the method of TA transmission as described in the second aspect as described above, or perform the method of TA transmission as described in the third aspect as described above.
- the TA transmission method and device provided by the embodiments of the present disclosure send the TA value corresponding to each candidate cell calculated by the candidate DU to the CU in a real-time/non-real-time transmission mode and forward it to the serving DU, which is beneficial to the acquisition of the serving DU.
- the TA values calculated by other candidate DUs are configured to the terminal, which reduces signaling interactions between interfaces and reduces L1 and L2 mobility delays and transmission delays.
- Figure 1 is one of the flow diagrams of a TA transmission method provided by an embodiment of the present disclosure
- Figure 2 is a second schematic flowchart of the TA transmission method provided by an embodiment of the present disclosure
- Figure 3 is a third schematic flowchart of the TA transmission method provided by an embodiment of the present disclosure.
- Figure 4 is one of the schematic flow diagrams of the implementation of the TA transmission method provided by the embodiment of the present disclosure
- Figure 5 is a second schematic flowchart of the implementation of the TA transmission method provided by an embodiment of the present disclosure
- Figure 6 is the third schematic flowchart of the implementation of the TA transmission method provided by the embodiment of the present disclosure.
- Figure 7 is the fourth schematic flowchart of the implementation of the TA transmission method provided by the embodiment of the present disclosure.
- Figure 8 is a fifth schematic flowchart of the implementation of the TA transmission method provided by an embodiment of the present disclosure.
- Figure 9 is one of the structural schematic diagrams of a DU provided by an embodiment of the present disclosure.
- Figure 10 is the second structural schematic diagram of a DU provided by an embodiment of the present disclosure.
- Figure 11 is a schematic structural diagram of a CU provided by an embodiment of the present disclosure.
- Figure 12 is one of the structural schematic diagrams of a TA transmission device provided by an embodiment of the present disclosure.
- Figure 13 is the second structural schematic diagram of a TA transmission device provided by an embodiment of the present disclosure.
- FIG. 14 is the third structural schematic diagram of a TA transmission device provided by an embodiment of the present disclosure.
- the term "and/or” describes the association relationship of associated objects, indicating that there can be three relationships, for example, A and/or B, which can mean: A exists alone, A and B exist simultaneously, and B exists alone. these three situations.
- the character "/” generally indicates that the related objects are in an "or” relationship.
- the term “plurality” refers to two or more than two, and other quantifiers are similar to it.
- Real-time handover When the network side decides to switch the UE from the current serving cell to another cell, the network side sends an RRC reconfiguration message to the UE, which carries the configuration information required for the UE to access the target cell; when the UE receives the RRC reconfiguration message sent by the network side, After the RRC reconfiguration message, the UE applies the configuration information of the target cell included in the reconfiguration message, initiates random access on the target cell side for synchronization, and feeds back the RRC reconfiguration completion message to the target cell side to report to the network. The side indicates that the UE has successfully accessed the target cell.
- the network side pre-configures multiple target cells for the UE, that is, the target cells are configured in advance.
- the configuration information and execution conditions are sent to the UE.
- the UE When the UE receives the configuration information of the target cell, it will not immediately perform handover or PSCell change or PSCell addition like traditional handover, primary and secondary cell change (PSCell change) or primary and secondary cell addition (PSCell addition), but will The received configuration is saved, and the configured candidate cells are measured and evaluated until a cell that meets the execution conditions exists.
- the UE performs the corresponding handover or PSCell change or PSCell addition process according to the stored reconfiguration message of the cell.
- Figure 1 is one of the flow diagrams of a TA transmission method provided by an embodiment of the present disclosure. This method can be applied to candidate distribution units DU. As shown in Figure 1, the method includes:
- Step 101 Send the first message to the target CU
- the first message carries the TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the access network (base station) is divided into a centralized unit (CU) and one or more distributed units (DU).
- CU is connected to the 5G Core Network (5GC) through the NG interface.
- 5GC 5G Core Network
- the access network it can control and coordinate multiple cells, including high-level control and data functions of the protocol stack.
- the main protocol layers involved include control RRC function on the plane and IP on the user plane, Service Data Adaptation Protocol (SDAP), Packet Data Convergence Protocol (PDCP); DU is a distributed unit that mainly implements radio frequency processing functions and wireless Baseband processing functions such as Radio Link Control (RLC), Media Access Control (MAC), and Physical Layer (Physical, PHY); based on actual equipment implementation, DU only It is responsible for the baseband processing function, and the Remote Radio Unit (RRU) is responsible for the radio frequency processing function.
- the DU and RRU are connected through the enhanced Common Public Radio Interface (eCPRI) interface.
- CU and DU are connected through the F1 interface.
- the logical systems of CU and DU can be divided into two types, namely CU-DU distributed architecture and CU-DU converged architecture.
- the benefit of the wireless network CU-DU architecture is that it can obtain inter-cell collaboration gains and achieve centralized load management; efficiently implement centralized control under dense networking, such as multi-connection and dense handover; obtain pooling gains and enable network function virtualization ( Network Functions Virtualization (NFV)/Software Defined Network (SDN) to meet the deployment needs of operators in certain 5G scenarios.
- NFV Network Functions Virtualization
- SDN Software Defined Network
- CU and DU deployment methods can be flexibly chosen in two ways, namely CU-DU distributed architecture and CU-DU converged architecture.
- CU and DU are deployed on separate devices and communicate through the F1 interface; in the converged architecture CU and DU DU is integrated into the same physical device, and the F1 interface becomes the internal interface of the device.
- CU-DU distributed architecture CU and DU are deployed on different servers, and CU and DU are connected through IP.
- the DU currently providing services to the terminal cannot know the corresponding TA value when the terminal accesses other DUs.
- the terminal needs to switch to other DUs, it needs to obtain the corresponding TA value by initiating a random access process, resulting in layer 1 (L1) and Layer 2 (L2) mobility has a large delay.
- the present disclosure provides a TA transmission method that can transmit the data through the corresponding interface.
- the TA value corresponding to the candidate DU is transmitted to the current serving DU and forwarded to the terminal through the current serving DU, thereby avoiding the above problems.
- the DU that currently provides services to the terminal is called a serving DU
- other DUs that can provide services to the terminal are called candidate DUs.
- the terminal can connect to the target CU through the serving DU or candidate DU, and access the core network through the target CU.
- the TA transmission method provided by the embodiments of this disclosure is applicable to all terminals. For simple explanation, how to implement TA transmission through one terminal (i.e., the target terminal), the DUs that provide services to it, other candidate DUs, and the target CU to avoid terminal The specific process of initiating a random access process for accessing candidate DUs is explained.
- Each DU corresponds to one or more cells and can provide services to terminals.
- the candidate DU After detecting the TA value corresponding to the target terminal, the candidate DU sends the first message to the DU currently providing services to the target terminal.
- the TA value here includes The terminal accesses one or more candidate cells corresponding to the candidate DU.
- the TA value corresponding to each candidate cell can also be selected and reported during the reporting process according to actual needs.
- the corresponding transmission method can use real-time transmission or non-real-time transmission. When non-real-time transmission is used, the signaling interaction between interfaces can be reduced.
- the TA value corresponding to the candidate DU may change according to the movement of the terminal, or the original terminal is within the coverage of all candidate cells of the candidate DU. After the terminal moves, the terminal is only in the coverage of the candidate DU. Therefore, the candidate DU can also report the updated TA value to the target CU through periodic reporting or non-periodic multiple reporting. This is to ensure that the TA value of the candidate cell corresponding to each candidate DU obtained by the target CU side is valid.
- the TA transmission method sends the TA value corresponding to each candidate cell calculated by the candidate DU to the CU in a real-time/non-real-time transmission mode, and forwards it to the serving DU, which is beneficial to the serving DU in acquiring other candidates.
- the TA value calculated by DU is configured to the terminal, which reduces signaling interactions between interfaces and reduces L1 and L2 mobility delays and transmission delays.
- the first message includes one or more of the following:
- the identification information of the first candidate cell is the identification information of the first candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the first candidate cell is the TA value corresponding to the first candidate cell.
- the candidate DU reports the TA value corresponding to the target terminal in the first candidate cell in real time.
- the configuration parameters corresponding to the first message used may include one or more of the following:
- the identification of the target terminal indicates which terminal is the target terminal, or the corresponding relationship between the candidate DU and the target terminal;
- the identification information of the first candidate cell represents the identification corresponding to all candidate cells included in the candidate DU. It is used by the terminal to determine which candidate cell to specifically access during the access process. It can be expressed in multiple ways, such as Custom cell ID identification, universal Cell Global Identity (CGI), etc. only need to ensure the uniqueness of each candidate cell;
- the frequency information of the first candidate cell is used by the terminal to obtain the frequency information corresponding to each candidate cell during the access process;
- the indication information of the uplink signal beam corresponding to each candidate cell indicates that there may be multiple uplink signal beams corresponding to one candidate cell.
- the terminal can determine the access process and the transmission channel to be used in a more fine-grained manner.
- time-frequency resources and other information that is, the identification information of the first candidate cell, the frequency point information of the first candidate cell and the indication information of the uplink signal beam corresponding to the first candidate cell are progressive in a layer-by-layer manner, through different granularities. Determine the specific information corresponding to the cell selected when the terminal accesses.
- the indication information of the TA value is used to indicate whether the first message carries a TA value, that is, whether the first message includes the TA value corresponding to the first candidate cell;
- the TA value corresponding to the first candidate cell represents the TA value corresponding to one or more candidate cells included in the first candidate cell. It can be understood that the indication information of the TA value indicates that the first message does not carry the TA value, this field may be empty. When the indication information of the TA value indicates that the first message carries the TA value, this field includes the TA values corresponding to one or more candidate cells.
- the candidate DU when the candidate DU sends the TA value of each candidate cell in the candidate DU for terminal access to the CU through the first message, it can carry multiple parameters to more flexibly provide indication information for the terminal. Different granularities instruct the terminal to determine corresponding resource information.
- the identification information of the first candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the identification information of the first candidate cell can be expressed in any of the following ways:
- Cell ID The customized cell ID (Cell ID) is set according to the system requirements and only needs to ensure the uniqueness of each cell;
- NCGI New Radio Cell Global Identifier
- PCI Physical Cell Identifier
- CGI Cell Global Identifier
- the first message includes one or more of the following:
- the identification information of the designated candidate cell is the identification information of the designated candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the designated candidate cell is the TA value corresponding to the designated candidate cell.
- the candidate DU uses a non-real-time transmission method to report the corresponding TA value.
- the target CU sends the reporting configuration information or the first request message to the candidate DU.
- the reported configuration information and the first request message both include information specifying the candidate cell.
- the candidate DU reports the TA value, it reports the TA value corresponding to the terminal accessing these candidate cells according to the designated candidate cell information.
- the candidate DU also sends the TA value corresponding to the terminal accessing the designated candidate cell through the first message.
- the first message may include one or more of the following:
- the identification information of the designated candidate cell is the identification information of the designated candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the designated candidate cell is the TA value corresponding to the designated candidate cell.
- the identification information of the designated candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the identification information of the designated candidate cell can be expressed in a variety of ways, such as: a customized cell ID (Cell ID), which is set according to system requirements and only needs to ensure the uniqueness of each cell;
- Cell ID a customized cell ID (Cell ID)
- Cell ID which is set according to system requirements and only needs to ensure the uniqueness of each cell
- the global identity of the new air interface cell is composed of the PLMN identity to which the cell belongs and the NR Cell Identifier (NCI) of the cell.
- NCGI NR Cell Identifier
- the physical cell identifier PCI is mainly used to distinguish wireless signals of different cells in LTE to ensure that there is no identical physical cell identifier within the coverage of the relevant cell;
- the global cell identity code CGI is used to identify the area covered by a cell (base station/a sector cell).
- the indication information of the uplink signal beam includes one or more of the following:
- the beam index of the uplink signal beam is the beam index of the uplink signal beam
- the transmission configuration indication index of the uplink signal beam
- the indication information of the uplink signal beam includes any one or more of the following:
- the beam index of the uplink signal beam is equivalent to numbering each beam to distinguish different beams
- the Transmission Configuration Indicator (TCI) index of the uplink signal beam is used to inform the terminal to receive the Physical Downlink Control Channel (PDCCH) or Physical Downlink Shared Channel (Physical Downlink Share Channel, PDSCH) and channel status information
- the reference signal (Channel State Information-Reference Signal, CSI-RS) shares the same downlink transmission beam of the base station; or informs the user to send the physical uplink control channel (Physical Uplink Control Channel, PUCCH)/physical uplink shared channel (Physical Uplink Share) Channel, PUSCH) and Sounding Reference Signal (SRS) use the same uplink transmission beam;
- the spatial relationship corresponding to the uplink signal beam is used to represent the information of the airspace resource corresponding to the beam, such as the spatial angle.
- the method before sending the first message to the target CU, the method includes:
- the DU obtains the first TA value determined by the candidate DU, where the first TA value is the TA value corresponding to the target terminal in the designated candidate cell.
- the target CU sends the corresponding reporting configuration information to the candidate DU, and the candidate actively reports according to the reporting configuration information, or sends a first request message to the candidate DU when needed. , obtain the TA value corresponding to each detected candidate cell from the candidate DU.
- the above-mentioned sending and reporting configuration information indicates the reporting rules of the first message reported by the candidate DU, and information such as the TA values corresponding to which cells need to be reported.
- the target CU sends a first request message to the candidate DU, and obtains the TA value corresponding to one or more candidate cells in the first candidate cell from the candidate DU.
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the reporting configuration message sent by the target CU to the candidate DU may include multiple fields, indicating different information respectively, and may specifically include one or more of the following:
- the identification of the target terminal is used to indicate which terminal is the target terminal, or the corresponding relationship between the candidate DU and the target terminal;
- the identification information of the designated candidate cell indicates the identification corresponding to one or more candidate cells among all candidate cells included in the candidate DU, that is, it is determined whether to report all candidate cells corresponding to the candidate DU or some candidate cells. If so, In some cases, specify which community it is;
- the frequency point information of the designated candidate cell is used to instruct the terminal to obtain each candidate cell during the access process. Select the frequency information corresponding to the cell;
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal, that is, the terminal sends the uplink reference signal periodically, and the candidate DU monitors the uplink reference signal periodically.
- the period is T
- the candidate DU reports the TA value calculated based on the uplink reference signal, it can be the same as the period T, or it can be reported once every several periods T, that is, reported once by nT (n ⁇ 2), which is equivalent to the TA value reported by the candidate DU.
- the period can be T or nT.
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained.
- the terminal periodically sends an uplink reference signal, and the candidate DU periodically monitors the uplink reference signal.
- the uplink reference signal is not monitored every cycle. Therefore, setting a reporting number threshold means that the candidate DU monitors the uplink reference signal according to the uplink reference signal. The report will be made only after the number of calculated TA values reaches the threshold;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA, that is, the reported TA value can be an actual measured value, a relative value, or indication information used to indicate a specific TA value.
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores different measurement value intervals included in the TA value and the index corresponding to each of the measurement value intervals.
- the TA reporting format included in the reporting configuration message is used to indicate the form in which the candidate DU reports the measured TA value.
- the TA measurement value can be reported directly, or the relative value can be reported, or the indication information used to indicate the specific TA value can be reported. .
- Directly reporting the measured value of TA means reporting whatever TA value is measured.
- the reference value here can be a pre- The set TA value of a certain candidate cell is used as a preset reference value; or a preset reference value is set for each candidate cell. It is also possible that this relative value is the difference between the measured value of TA at the current time and the measured value of TA at the previous time.
- Reporting indication information indicating a specific TA value, that is, reporting the corresponding index of the measured value of TA in a preset TA value list, which stores different measurement value intervals included in the TA value. And the index corresponding to each measurement value interval.
- the default TA value list is shown in Table 1.
- the TA value corresponding to candidate cell A measured by the candidate DU is d
- the TA value corresponding to candidate cell B is e, and 0 ⁇ a ⁇ d ⁇ b ⁇ e ⁇ c
- the TA reporting format of the candidate cell A of the candidate DU can be expressed as M1
- the TA reporting format of the candidate cell B of the candidate DU can be expressed as M3.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the target CU can obtain the TA value of each candidate cell of the terminal in the candidate DU by sending a reporting configuration message to allow the candidate DU to proactively report.
- a first request message may be sent to the candidate DU to obtain the TA value of each candidate cell of the terminal in the candidate DU.
- the first request message may include any one or more of the following:
- the identification of the target terminal is used to indicate which terminal is the target terminal, or the corresponding relationship between the candidate DU and the target terminal;
- Specifies the identification information of the candidate cell indicating one of all candidate cells included in the candidate DU Or the identifiers corresponding to multiple candidate cells, that is, it is determined whether all candidate cells corresponding to the candidate DU are reported, or part of the candidate cells are reported. If it is part of the candidate cells, which cell is specifically indicated;
- the frequency information of the specified candidate cell is used to instruct the terminal to obtain the frequency information corresponding to each candidate cell during the access process;
- the TA request identifier is used to indicate that the TA value corresponding to the target terminal in the candidate cell is obtained based on a single candidate cell. It can be understood that when the first request message only includes this item, it can be Directly use the TA request identifier to determine the TA value corresponding to which candidate cell needs to be reported.
- the first message is an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- the above-mentioned first message is an extension of the original F1 interface message.
- the identification of the target terminal, the identification information of the first candidate cell, and the frequency point information of the first candidate cell are added.
- Original F1 interface messages such as: terminal context establishment response (UE CONTEXT SETUP RESPONSE), terminal context modification (UE CONTEXT MODIFICATION REQUIRED), or terminal context modification response (UE CONTEXT MODIFICATIONRESPONSE), etc.
- terminal context establishment response UE CONTEXT SETUP RESPONSE
- terminal context modification UE CONTEXT MODIFICATION REQUIRED
- terminal context modification response UE CONTEXT MODIFICATIONRESPONSE
- the first message may also be a customized F1 interface message.
- the customized F1 interface message includes the identification of the target terminal, the identification information of the first candidate cell, the frequency information of the first candidate cell, and the corresponding information of the first candidate cell.
- the TA value of the terminal in each candidate cell of the candidate DU is sent to the target CU. It can not only make full use of the original F1 interface messages without occupying too many resources, but also can realize the same function through customized F1 interface messages, and the implementation method is more flexible.
- the TA transmission method sends the TA value calculated by the candidate DU to the CU through the first message in a real-time/non-real-time transmission mode, and forwards it to the serving DU, which is beneficial to the serving DU to obtain other candidates.
- TA value calculated by DU and configured to the terminal reducing the number of interfaces Inter-signaling interaction reduces L1 and L2 mobility delays and transmission delays.
- FIG. 2 is the second schematic flowchart of the TA transmission method provided by an embodiment of the present disclosure; as shown in Figure 2, this method can be applied to the service distribution unit DU, including:
- Step 201 Send a second request message to the target CU to obtain the first TA value determined by the candidate DU, where the first TA value is the TA value corresponding to the target terminal in the designated candidate cell;
- the designated candidate cell is one or more of the first candidate cells; the first candidate cell is the candidate cell corresponding to the candidate DU; and the target CU stores the first TA values determined by all the candidate DUs.
- the target CU will immediately forward the information to the target CU after receiving the information.
- the DU currently providing services to the terminal; if the candidate DU adopts a non-real-time transmission mode, the serving DU can send a second request to the target CU to obtain this information.
- the serving DU may request to obtain the TA values corresponding to all candidate cells of the candidate DU, or may request to obtain the TA values corresponding to some candidate cells of the candidate DU, that is, the candidate cells for which TA values need to be obtained in the second request message. That is, the TA value corresponding to the designated candidate cell of the candidate DU is obtained.
- All candidate cells corresponding to the candidate DU are collectively referred to as the first candidate cells.
- the above-mentioned designated candidate cells are one or more of the first candidate cells, and the target CU receives the corresponding candidate cells in the first candidate cells reported by all candidate DUs. TA value.
- the TA transmission method sends the TA value calculated by the candidate DU to the CU through the first message in a real-time/non-real-time transmission mode, and forwards it to the serving DU, which is beneficial to the serving DU to obtain other candidates.
- the TA value calculated by DU is configured to the terminal, which reduces signaling interactions between interfaces and reduces L1 and L2 mobility delays and transmission delays.
- the second request message includes one or more of the following:
- TA request identification used to indicate obtaining the target terminal in a single candidate cell.
- the second request message sent by the service DU to the target CU may include one or more of the following:
- the identification of the target terminal is used to indicate which terminal is the target terminal, or the corresponding relationship between the candidate DU and the target terminal;
- the identification information of the designated candidate cell indicates the identification corresponding to one or more candidate cells among all candidate cells included in the candidate DU, that is, it is determined whether to report all candidate cells corresponding to the candidate DU or some candidate cells. If so, In some cases, specify which community it is;
- the frequency information of the specified candidate cell is used to instruct the terminal to obtain the frequency information corresponding to each candidate cell during the access process;
- the TA request identifier is used to indicate that the TA value corresponding to the target terminal in the candidate cell is obtained based on a single candidate cell. It can be understood that when the first request message only includes this item, it can be Directly use the TA request identifier to determine the TA value corresponding to which candidate cell needs to be reported.
- the identification information of the designated candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the identification information of the designated candidate cell can be expressed in a variety of ways, such as: a customized cell ID (Cell ID), which is set according to system requirements and only needs to ensure the uniqueness of each cell;
- Cell ID a customized cell ID (Cell ID)
- Cell ID which is set according to system requirements and only needs to ensure the uniqueness of each cell
- the global identity of the new air interface cell is composed of the PLMN identity to which the cell belongs and the NR Cell Identifier (NCI) of the cell.
- NCGI NR Cell Identifier
- the physical cell identifier PCI is mainly used to distinguish wireless signals of different cells in LTE to ensure that there is no identical physical cell identifier within the coverage of the relevant cell;
- the global cell identity code CGI is used to identify the area covered by a cell (base station/a sector cell).
- the second request message is sent through an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- the above-mentioned second request message is an extension of the original F1 interface message.
- the identification information of the target terminal On the basis of the original F1 interface message, the identification information of the target terminal, the identification information of the first candidate cell, and the frequency point of the first candidate cell are added.
- Original F1 interface messages such as: UE CONTEXT MODIFICATION REQUEST, etc.
- the second request message may also be a customized F1 interface message.
- the customized F1 interface message includes the identification of the target terminal, the identification information of the first candidate cell, the frequency information of the first candidate cell, and the corresponding information of the first candidate cell.
- the TA value of the terminal in each candidate cell of the candidate DU is sent to the target CU. It can not only make full use of the original F1 interface messages without occupying too many resources, but also can realize the same function through customized F1 interface messages, and the implementation method is more flexible.
- the TA transmission method sends the TA value calculated by the candidate DU to the CU through the first message in a real-time/non-real-time transmission mode, and forwards it to the serving DU, which is beneficial to the serving DU to obtain other candidates.
- the TA value calculated by DU is configured to the terminal, which reduces signaling interactions between interfaces and reduces L1 and L2 mobility delays and transmission delays.
- Figure 3 is a third flowchart of the TA transmission method provided by an embodiment of the present disclosure. As shown in Figure 3, the method is applied to the target CU and includes:
- Step 301 Receive the first message sent by the candidate DU;
- Step 302 Based on the first message, determine the TA value corresponding to the target terminal in the first candidate cell, or the TA value corresponding to the target terminal in the specified candidate cell;
- the first message carries the TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the target CU may receive the TA value corresponding to the terminal actively reported by the candidate DU when it accesses the first candidate cell corresponding to the candidate DU, or send a first request message to obtain the candidate DU.
- the TA value corresponding to the terminal determined by selecting DU when accessing its corresponding first candidate cell.
- the first candidate cells are all candidate cells corresponding to the candidate DU.
- the candidate DU When the candidate DU is actively reported, the candidate DU adopts a real-time transmission method and reports the TA value corresponding to the target terminal in the first candidate cell through the first message.
- the first request message may require the candidate DU to report the TA value of the designated candidate cell; the designated candidate cell is one or more of the first candidate cells.
- the candidate DU adopts a non-real-time transmission mode and reports the TA value corresponding to the target terminal in the designated candidate cell through the first message.
- the target CU receives the above TA value information reported by the candidate DU and can store it so that the subsequent serving DU can obtain the TA value corresponding to the target terminal in one or some candidate cells from the target CU.
- the TA transmission method sents the TA value corresponding to each candidate cell calculated by the candidate DU to the CU through the first message in a real-time/non-real-time transmission mode, and forwards it to the serving DU, which is beneficial to the service
- the DU obtains the TA values calculated by other candidate DUs and configures them to the terminal, which reduces signaling interactions between interfaces and reduces L1 and L2 mobility delays and transmission delays.
- the method when the first message carries the TA value corresponding to the target terminal in the designated candidate cell, before receiving the first message sent by the candidate DU, the method includes:
- reporting configuration message Send a reporting configuration message to the candidate DU, where the reporting configuration message is used to configure the reporting rule for the candidate DU to report the TA value corresponding to the target terminal in the first candidate cell;
- the target CU may obtain the TA value corresponding to the candidate cell in the designated candidate cell by the target terminal determined by the candidate DU by sending a reporting configuration message or sending a first request message.
- the reporting configuration message is used by the candidate DU to proactively report the TA value corresponding to the target terminal in the designated candidate cell. Or when necessary, send a first request message to the candidate DU to obtain the corresponding target terminal determined by the candidate DU in the designated candidate cell. TA value.
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the reporting configuration message sent by the target CU to the candidate DU may include multiple fields, indicating different information respectively, and may specifically include one or more of the following:
- the identification of the target terminal is used to indicate which terminal is the target terminal, or the corresponding relationship between the candidate DU and the target terminal;
- the identification information of the designated candidate cell indicates the identification corresponding to one or more candidate cells among all candidate cells included in the candidate DU, that is, it is determined whether to report all candidate cells corresponding to the candidate DU or some candidate cells. If so, In some cases, specify which community it is;
- the frequency information of the specified candidate cell is used to instruct the terminal to obtain the frequency information corresponding to each candidate cell during the access process;
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal, that is, the terminal sends the uplink reference signal periodically, and the candidate DU monitors the uplink reference signal periodically.
- the period is T
- the candidate DU reports the TA value calculated based on the uplink reference signal, it can be the same as the period T, or it can be reported once every several periods T, that is, reported once by nT (n ⁇ 2), which is equivalent to the TA value reported by the candidate DU.
- the period can be T or nT.
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained.
- the terminal periodically sends an uplink reference signal, and the candidate DU corresponding to the uplink reference signal is periodically monitored. signal, the uplink reference signal cannot be monitored in every cycle. Therefore, a threshold of the number of reporting times is set, that is, the number of times the candidate DU calculates the TA value based on the uplink reference signal reaches the threshold before reporting;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA, that is, the reported TA value can be an actual measured value, a relative value, or indication information used to indicate a specific TA value.
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores different measurement value intervals included in the TA value and the index corresponding to each of the measurement value intervals.
- the TA reporting format included in the reporting configuration message is used to indicate the form in which the candidate DU reports the measured TA value.
- the TA measurement value can be reported directly, or the relative value can be reported, or the indication information used to indicate the specific TA value can be reported. .
- Directly reporting the measured value of TA means reporting whatever TA value is measured.
- the change amount of the measured value of TA is reported, that is, the relative value.
- the reference value here can be the preset TA value of a certain candidate cell as the default reference value; or a preset reference value is set for each candidate cell. value. It is also possible that this relative value is the difference between the measured value of TA at the current time and the measured value of TA at the previous time.
- Reporting indication information indicating a specific TA value, that is, reporting the corresponding index of the measured value of TA in a preset TA value list, which stores different measurement value intervals included in the TA value. And the index corresponding to each measurement value interval.
- the default TA value list is shown in Table 1.
- the TA value corresponding to candidate cell A measured by the candidate DU is d
- the TA value corresponding to candidate cell B is e, and 0 ⁇ a ⁇ d ⁇ b ⁇ e ⁇ c
- the TA reporting format of the candidate cell A of the candidate DU can be expressed as M1
- the TA reporting format of the candidate cell B of the candidate DU can be expressed as M3.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the target CU can obtain the TA value of each candidate cell of the terminal in the candidate DU by sending a reporting configuration message to allow the candidate DU to proactively report.
- a first request message may be sent to the candidate DU to obtain the TA value of each candidate cell of the terminal in the candidate DU.
- the first request message may include any one or more of the following:
- the identification of the target terminal is used to indicate which terminal is the target terminal, or the corresponding relationship between the candidate DU and the target terminal;
- the identification information of the designated candidate cell indicates the identification corresponding to one or more candidate cells among all candidate cells included in the candidate DU, that is, it is determined whether to report all candidate cells corresponding to the candidate DU or some candidate cells. If so, In some cases, specify which community it is;
- the frequency information of the specified candidate cell is used to instruct the terminal to obtain the frequency information corresponding to each candidate cell during the access process;
- the TA request identifier is used to indicate that the TA value corresponding to the target terminal in the candidate cell is obtained based on a single candidate cell. It can be understood that when the first request message only includes this item, it can be Directly use the TA request identifier to determine the TA value corresponding to which candidate cell needs to be reported.
- the designated candidate cell is determined based on the identification information of the designated candidate cell.
- the identification information of the designated candidate cell is a customized cell identity, a new air interface cell global identity, a physical cell identity, and a global cell identity code. any of them.
- the identification information of the designated candidate cell can be expressed in a variety of ways, such as: a customized cell ID (Cell ID), which is set according to system requirements and only needs to ensure the uniqueness of each cell;
- Cell ID a customized cell ID (Cell ID)
- Cell ID which is set according to system requirements and only needs to ensure the uniqueness of each cell
- the global identity of the new air interface cell is composed of the PLMN identity to which the cell belongs and the NR Cell Identifier (NCI) of the cell.
- NCGI NR Cell Identifier
- the physical cell identifier PCI is mainly used to distinguish wireless signals of different cells in LTE to ensure that there is no identical physical cell identifier within the coverage of the relevant cell;
- the global cell identity code CGI is used to identify the area covered by a cell (base station/a sector cell).
- the first candidate cell is all candidate cells corresponding to the candidate DU, and is determined based on the identification information of the first candidate cell.
- the identification information of the first candidate cell is a customized cell identification, a new Any of the air interface cell global identity, physical cell identity, and global cell identity.
- the identification information of the first candidate cell can be expressed in a variety of ways, such as: a customized cell ID (Cell ID), which is set according to system requirements and only needs to ensure the uniqueness of each cell;
- Cell ID a customized cell ID
- the global identity of the new air interface cell is composed of the PLMN identity to which the cell belongs and the NR Cell Identifier (NCI) of the cell.
- NCGI NR Cell Identifier
- the physical cell identifier PCI is mainly used to distinguish wireless signals of different cells in LTE to ensure that there is no identical physical cell identifier within the coverage of the relevant cell;
- the global cell identity code CGI is used to identify the area covered by a cell (base station/a sector cell).
- the first message is an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- the above-mentioned first message is an extension of the original F1 interface message.
- the identification of the target terminal, the identification information of the first candidate cell, and the frequency point information of the first candidate cell are added.
- indication information of the uplink signal beam corresponding to the first candidate cell, the TA One or more of the indication information of the value and the TA value corresponding to the first candidate cell.
- Original F1 interface messages such as: UE CONTEXT SETUP RESPONSE, UE CONTEXT MODIFICATION REQUIRED, or UE CONTEXT MODIFICATION RESPONSE, etc.
- the first message may also be a customized F1 interface message.
- the customized F1 interface message includes the identification of the target terminal, the identification information of the first candidate cell, the frequency information of the first candidate cell, and the corresponding information of the first candidate cell.
- the TA value of the terminal in each candidate cell of the candidate DU is sent to the target CU. It can not only make full use of the original F1 interface messages without occupying too many resources, but also can realize the same function through customized F1 interface messages, and the implementation method is more flexible.
- the TA transmission method sends the TA value calculated by the candidate DU to the CU through the first message in a real-time/non-real-time transmission mode, and forwards it to the serving DU, which is beneficial to the serving DU to obtain other candidates.
- the TA value calculated by DU is configured to the terminal, which reduces signaling interactions between interfaces and reduces L1 and L2 mobility delays and transmission delays.
- Scenario 1 The candidate DU uses real-time transmission to transmit the TA value
- Example 1-1 and Figure 4 are one of the schematic implementation flow diagrams of the TA transmission method provided by the embodiment of the present disclosure.
- the candidate DU uses real-time transmission to transmit the TA value, as shown in Figure 4:
- Step 4-1 After the candidate DU calculates the TA value, it reports the information related to the TA value to the CU through the F1 interface;
- Step 4-2 The candidate DU reports TA value-related information to the CU.
- the message can reuse the current interface message, such as UE CONTEXT SETUP RESPONSE, UE CONTEXT MODIFICATION REQUIRED, or UE CONTEXT MODIFICATION RESPONSE; new interface messages can also be defined.
- the above interface messages cover at least one of the following information:
- Customized cell ID for candidate cell Candidate cell
- the TA value of the Candidate cell is explicitly included in the above interface message, or implicitly included in the information element IE in the above message;
- TA value indicator used to indicate the TA value of candidate cell carried in the message
- the beam index of the detected uplink signal beam in the Candidate cell is the beam index of the detected uplink signal beam in the Candidate cell
- the transmission configuration indication index TCI index of the uplink signal beam detected in the Candidate cell is the transmission configuration indication index TCI index of the uplink signal beam detected in the Candidate cell
- Step 4-3 The CU sends the TA value and candidate cell related information to the serving DU or the UE can reuse the current interface message, such as UE CONTEXT SETUP RESPONSE, UE CONTEXT MODIFICATION REQUIRED, UE CONTEXT MODIFICATION RESPONSE, or DL RRC MESSAGE TRANSFER; also New interface messages can be defined.
- the above interface messages cover at least one of the following information:
- Customized cell ID for candidate cell Candidate cell
- the TA value of the Candidate cell is explicitly included in the above interface message, or implicitly included in the IE in the above message;
- TA value indicator used to indicate the TA value of candidate cell carried in the message
- the beam index of the detected uplink signal beam in the Candidate cell is the beam index of the detected uplink signal beam in the Candidate cell
- the TCI index of the uplink signal beam detected in the Candidate cell is the TCI index of the uplink signal beam detected in the Candidate cell
- Scenario 2 The candidate DU uses non-real-time transmission to transmit the TA value
- Example 2-1 and Figure 5 are the second schematic flow diagram of the implementation of the TA transmission method provided by the embodiment of the present disclosure. Pre-configure reporting rules, as shown in Figure 5:
- Step 5-1 The CU configures TA reporting rules for the candidate cells of the candidate DU. It can report the TA value periodically or report it every N measurements.
- the configuration method can extend the original F1 interface messages, such as UE CONTEXT SETUP RESPONSE, UE CONTEXT MODIFICATION REQUIRED, or UE CONTEXT MODIFICATION RESPONSE; new interface messages can also be defined. At least one of the following information should be included:
- Customized cell ID for candidate cell
- Step 5-2 The candidate DU calculates TA according to the configuration, and the TA value is temporarily stored in the candidate DU. When the latest TA value is calculated, the old TA value is replaced with the new TA value.
- Step 5-3 The candidate DU's message reporting TA value-related information can reuse the current interface message, such as UE CONTEXT SETUP RESPONSE, UE CONTEXT MODIFICATION REQUIRED, or UE CONTEXT MODIFICATION RESPONSE; new interface messages can also be defined.
- the message should contain at least one or more of the following information:
- the TA value of the Candidate cell is explicitly included in the above interface message, or implicitly included in the IE in the above message;
- TA value indicator used to indicate the TA value of candidate cell carried in the message
- the beam index of the detected uplink signal beam in the Candidate cell is the beam index of the detected uplink signal beam in the Candidate cell
- the TCI index of the uplink signal beam detected in the Candidate cell is the TCI index of the uplink signal beam detected in the Candidate cell
- Example 2-2 Figure 6 is the third implementation flow diagram of the TA transmission method provided by the embodiment of the present disclosure.
- the CU sends a first request message to the candidate DU to obtain the corresponding TA value, as shown in Figure 6:
- Step 6-1 The candidate DU calculates TA according to the configuration, and the TA value is temporarily stored in the candidate DU. When the latest TA value is calculated, the old TA value is replaced with the new TA value.
- Step 6-2 The CU requests the candidate cell of the candidate DU to report information such as the TA value.
- the request method can extend the original F1 interface message, such as UE CONTEXT MODIFICATION REQUEST; it can also define a new interface message. At least one of the following information should be included:
- TA request identification indicating to send the latest TA value per UE per cell
- Step 6-3 The candidate DU's message reporting TA value-related information can reuse the current interface message, such as UE CONTEXT SETUP RESPONSE, UE CONTEXT MODIFICATION REQUIRED, or UE CONTEXT MODIFICATION RESPONSE; new interface messages can also be defined.
- the message should contain at least one or more of the following information:
- the TA value of the Candidate cell is explicitly included in the above interface message, or implicitly included in the IE in the above message;
- TA value indicator used to indicate the TA value of candidate cell carried in the message
- the beam index of the detected uplink signal beam in the Candidate cell is the beam index of the detected uplink signal beam in the Candidate cell
- the TCI index of the uplink signal beam detected in the Candidate cell is the TCI index of the uplink signal beam detected in the Candidate cell
- Example 2-3 Figure 7 is the fourth implementation flow diagram of the TA transmission method provided by the embodiment of the present disclosure.
- the service DU requests to obtain the TA value corresponding to the candidate DU, as shown in Figure 7:
- Step 7-1 The CU receives the TA value from the candidate DU, and the TA value is temporarily stored in the CU. When the latest TA value is calculated, the old TA value is replaced with the new TA value.
- Step 7-2 CU receives a request message from the service DU, requesting to send the latest TA value and other information.
- the request method can extend the original F1 interface message, such as UE CONTEXT MODIFICATION REQUEST; it can also define new interface messages. At least one of the following pieces of information should be included, explicitly or implicitly:
- TA request identification indicating to send the latest TA value per UE per cell
- Step 7-3 After receiving the request, CU sends TA value related information to the service DU.
- the sending method can extend the original F1 interface message, such as UE CONTEXT MODIFICATION REQUEST; it can also define new interface messages. At least one of the following pieces of information should be included, explicitly or implicitly:
- the TA value of the Candidate cell is explicitly included in the above interface message, or implicitly included in the IE in the above message;
- TA value indicator used to indicate the TA value of candidate cell carried in the message
- the beam index of the detected uplink signal beam in the Candidate cell is the beam index of the detected uplink signal beam in the Candidate cell
- the TCI index of the uplink signal beam detected in the Candidate cell is the TCI index of the uplink signal beam detected in the Candidate cell
- FIG. 8 is the fifth implementation flow diagram of the TA transmission method provided by the embodiment of the present disclosure.
- the target terminal sends a request message to obtain the TA value corresponding to the candidate DU, as shown in Figure 8:
- Step 8-1 The CU receives the TA value from the candidate DU, and the TA value is temporarily stored in the CU. When the latest TA value is calculated, the old TA value is replaced with the new TA value.
- Step 8-2 The CU receives a request message from the target terminal, requesting to send the latest TA value and other information.
- the request method can extend the original interface message, such as INITIAL UL RRC MESSAGE TRANSFER, UL RRC MESSAGE TRANSFER; new interface messages can also be defined. At least one of the following pieces of information should be included, explicitly or implicitly:
- TA request identification indicating to send the latest TA value per UE per cell
- Step 8-3 After receiving the request, optionally, the CU sends TA value related information to the target terminal.
- the sending method can extend the original interface message, such as DL RRC MESSAGE TRANSFER; it can also define new interface messages. At least one of the following pieces of information should be included, explicitly or implicitly:
- the TA value of the Candidate cell is explicitly included in the above interface message, or implicitly included in the IE in the above message;
- TA value indicator used to indicate the TA value of candidate cell carried in the message
- the beam index of the detected uplink signal beam in the Candidate cell is the beam index of the detected uplink signal beam in the Candidate cell
- the TCI index of the uplink signal beam detected in the Candidate cell is the TCI index of the uplink signal beam detected in the Candidate cell
- Figure 9 is one of the structural schematic diagrams of a DU provided by an embodiment of the present disclosure.
- the distribution unit DU includes a memory 920, a transceiver 910 and a processor 900; the processor 900 and the memory 920 can also be physically Arrange them separately.
- the memory 920 is used to store computer programs; the transceiver 910 is used to send and receive data under the control of the processor 900.
- the transceiver 910 is used to receive and transmit data under the control of the processor 900.
- the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by processor 900 and various circuits of the memory represented by memory 920 are linked together.
- the bus architecture can also link together various other circuits such as peripherals, voltage regulators, power management circuits, etc., which are all well known in the art and therefore will not be described further in this disclosure.
- the bus interface provides the interface.
- the transceiver 910 may be a plurality of elements, including a transmitter and a receiver, providing a unit for communicating with various other devices over transmission media, including wireless channels, wired channels, optical cables, and other transmission media.
- the processor 900 is responsible for managing the bus architecture and general processing, and the memory 920 can store data used by the processor 900 when performing operations.
- the processor 900 may be a central processing unit (Central Processing Unit, CPU), an application specific integrated circuit (Application Specific Integrated Circuit, ASIC), a field programmable gate array (Field-Programmable Gate Array, FPGA) or a complex programmable logic device (Complex Programmable Logic Device (CPLD), the processor can also adopt a multi-core architecture.
- CPU Central Processing Unit
- ASIC Application Specific Integrated Circuit
- FPGA Field-Programmable Gate Array
- CPLD Complex Programmable Logic Device
- the processor 900 is configured to execute any of the methods provided by the embodiments of the present disclosure according to the obtained executable instructions by calling the computer program stored in the memory 920, for example:
- the first message carries the TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the first message includes one or more of the following:
- the identification information of the first candidate cell is the identification information of the first candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the first candidate cell is the TA value corresponding to the first candidate cell.
- the first message includes one or more of the following:
- the identification information of the designated candidate cell is the identification information of the designated candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the designated candidate cell is the TA value corresponding to the designated candidate cell.
- the method before sending the first message to the target CU, the method includes:
- the target CU Receives a first request message sent by the target CU.
- the first request message is used to obtain the first TA value determined by the candidate DU from the candidate DU.
- the first TA value is the target terminal in the designated candidate cell. The corresponding TA value.
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the identification information of the first candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the identification information of the designated candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the indication information of the uplink signal beam includes one or more of the following:
- the beam index of the uplink signal beam is the beam index of the uplink signal beam
- the transmission configuration indication index of the uplink signal beam
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores the different measurement value intervals included in the TA value and the corresponding index of each measurement value interval. index of.
- the first message is an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- Figure 10 is the second structural schematic diagram of a DU provided by an embodiment of the present disclosure.
- the distribution unit DU includes a memory 1020, a transceiver 1010 and a processor 1000; the processor 1000 and the memory 1020 can also be physically Arrange them separately.
- the memory 1020 is used to store computer programs; the transceiver 1010 is used to send and receive data under the control of the processor 1000.
- the transceiver 1010 is used to receive and transmit data under the control of the processor 1000.
- the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by processor 1000 and various circuits of the memory represented by memory 1020 are linked together.
- the bus architecture can also link together various other circuits such as peripherals, voltage regulators, power management circuits, etc., which are all well known in the art and therefore will not be described further in this disclosure.
- the bus interface provides the interface.
- the transceiver 1010 may be a plurality of components, including a transmitter and a receiver, providing a unit for communicating with various other devices over transmission media, including wireless channels, wired channels, optical cables, and other transmission media.
- the processor 1000 is responsible for managing the bus architecture and general processing, and the memory 1020 can store data used by the processor 1000 when performing operations.
- the processor 1000 may be a central processing unit (Central Processing Unit, CPU), an application specific integrated circuit (Application Specific Integrated Circuit, ASIC), a field programmable gate array (Field-Programmable Gate Array, FPGA) or a complex programmable logic device (Complex Programmable Logic Device (CPLD), the processor can also adopt a multi-core architecture.
- CPU Central Processing Unit
- ASIC Application Specific Integrated Circuit
- FPGA Field-Programmable Gate Array
- CPLD Complex Programmable Logic Device
- the processor 1000 is configured to execute any of the methods provided by the embodiments of the present disclosure according to the obtained executable instructions by calling the computer program stored in the memory 1020, for example:
- the designated candidate cell is one or more of the first candidate cells; the first candidate cell is the candidate cell corresponding to the candidate DU; and the target CU stores the first TA values determined by all the candidate DUs.
- the second request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the identification information of the designated candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the second request message is sent through an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- Figure 11 is a schematic structural diagram of a CU provided by an embodiment of the present disclosure.
- the centralized unit CU includes a memory 1120, a transceiver 1110 and a processor 1100; the processor 1100 and the memory 1120 can also be physically arranged separately. .
- the memory 1120 is used to store computer programs; the transceiver 1110 is used to send and receive data under the control of the processor 1100.
- the transceiver 1110 is used to receive and transmit data under the control of the processor 1100.
- the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by processor 1100 and various types of memories represented by memory 1120. Circuits are linked together. The bus architecture can also link together various other circuits such as peripherals, voltage regulators, power management circuits, etc., which are all well known in the art and therefore will not be described further in this disclosure.
- the bus interface provides the interface.
- the transceiver 1110 may be a plurality of elements, including a transmitter and a receiver, providing a unit for communicating with various other devices over transmission media, including wireless channels, wired channels, optical cables, and other transmission media.
- the processor 1100 is responsible for managing the bus architecture and general processing, and the memory 1120 can store data used by the processor 1100 when performing operations.
- the processor 1100 may be a central processing unit (CPU), an application specific integrated circuit (Application Specific Integrated Circuit, ASIC), a field programmable gate array (Field-Programmable Gate Array, FPGA) or a complex programmable logic device (Complex Programmable Logic Device (CPLD), the processor can also adopt a multi-core architecture.
- CPU central processing unit
- ASIC Application Specific Integrated Circuit
- FPGA field programmable gate array
- CPLD Complex Programmable Logic Device
- the processor 1100 is configured to execute any of the methods provided by the embodiments of the present disclosure according to the obtained executable instructions by calling the computer program stored in the memory 1120, for example:
- the first message carries the TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the method when the first message carries the TA value corresponding to the target terminal in the designated candidate cell, before receiving the first message sent by the candidate DU, the method includes:
- reporting configuration message Send a reporting configuration message to the candidate DU, where the reporting configuration message is used to configure the reporting rule for the candidate DU to report the TA value corresponding to the target terminal in the first candidate cell;
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU measures and obtains the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the designated candidate cell is determined based on the identification information of the designated candidate cell.
- the identification information of the designated candidate cell is a customized cell identity, a new air interface cell global identity, a physical cell identity, and a global cell identity code. any of them.
- the first candidate cell is determined based on the identification information of the first candidate cell.
- the identification information of the first candidate cell is a customized cell identity, a new air interface cell global identity, a physical cell identity, and a global cell identity. Any of the cell identification codes.
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores different measurement value intervals included in the TA value and the index corresponding to each of the measurement value intervals.
- the first message is an improved F1 interface message or a customized F1 interface message;
- the improved F1 interface message is obtained by extending the original F1 interface message.
- Figure 12 is one of the structural schematic diagrams of a TA transmission device provided by an embodiment of the present disclosure, which is applied to candidate DUs. As shown in Figure 12, the device includes:
- the first sending module 1201 is used to send the first message to the target CU;
- the first message carries the time advance TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the first message includes one or more of the following:
- the identification information of the first candidate cell is the identification information of the first candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the first candidate cell is the TA value corresponding to the first candidate cell.
- the first message includes one or more of the following:
- the identification information of the designated candidate cell is the identification information of the designated candidate cell
- the indication information of the TA value is used to indicate whether the first message carries the TA value
- the TA value corresponding to the designated candidate cell is the TA value corresponding to the designated candidate cell.
- the device further includes a first receiving module 1202, used for:
- the first request message is used to obtain the first TA value determined by the candidate DU from the candidate DU.
- the first TA value is the target terminal corresponding to the designated candidate cell. TA value.
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the measurement period of the uplink reference signal
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the identification information of the first candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the identification information of the designated candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the indication information of the uplink signal beam includes one or more of the following:
- the beam index of the uplink signal beam is the beam index of the uplink signal beam
- the transmission configuration indication index of the uplink signal beam
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores different measurement value intervals included in the TA value and the index corresponding to each of the measurement value intervals.
- the first message is an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- Figure 13 is the second structural schematic diagram of a TA transmission device provided by an embodiment of the present disclosure.
- the device is applied to serving DU.
- the device includes:
- the second sending module 1301 is used to send a second request message to the target CU, and is used to obtain the first TA value determined by the candidate DU, where the first TA value is the TA value corresponding to the target terminal in the designated candidate cell;
- the designated candidate cell is one or more of the first candidate cells; the first candidate cell is the candidate cell corresponding to the candidate DU; and the target CU stores the first TA values determined by all the candidate DUs.
- the second request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the identification information of the designated candidate cell is any one of a customized cell identification, a new air interface cell global identification, a physical cell identification, and a global cell identification code.
- the second request message is sent through an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- Figure 14 is the third structural schematic diagram of a TA transmission device provided by an embodiment of the present disclosure.
- the device is applied to a target CU.
- the device includes:
- the third receiving module 1401 is used to receive the first message sent by the candidate DU;
- the third determination module 1402 is configured to determine the TA value corresponding to the target terminal in the first candidate cell based on the first message, or the TA value corresponding to the target terminal in the specified candidate cell;
- the first message carries the TA value corresponding to the target terminal in the first candidate cell, or carries the TA value corresponding to the target terminal in the designated candidate cell;
- the first candidate cell is a candidate cell corresponding to the candidate DU; the designated candidate cell is one or more of the first candidate cells.
- the device also includes a third sending module 1403, used for:
- reporting configuration message Send a reporting configuration message to the candidate DU, where the reporting configuration message is used to configure the reporting rule for the candidate DU to report the TA value corresponding to the target terminal in the first candidate cell;
- the reported configuration message includes one or more of the following:
- the TA reporting period is a positive integer multiple of the uplink reference signal measurement period
- the TA reporting times threshold is used to indicate that after the number of times the candidate DU has measured and obtained the TA value reaches the TA reporting times threshold, the DU is measured and the last TA value among the TA values is obtained;
- the TA reporting format is used to indicate the representation method of the TA value reported by the TA.
- the first request message includes any one or more of the following:
- the TA request identifier is used to instruct to obtain the TA value corresponding to the target terminal in the candidate cell in the unit of a single candidate cell.
- the designated candidate cell is determined based on the identification information of the designated candidate cell.
- the identification information of the designated candidate cell is a customized cell identity, a new air interface cell global identity, a physical cell identity, and a global cell identity code. any of them.
- the first candidate cell is determined based on the identification information of the first candidate cell.
- the identification information of the first candidate cell is a customized cell identity, a new air interface cell global identity, a physical cell identity, and a global cell identity. Any of the cell identification codes.
- the TA reporting format includes any of the following:
- the change amount of the measured value of TA is the difference between the measured value of TA at the current time and the preset reference value, or the measured value of TA at the current time and the measured value of TA at the previous time. the difference between;
- the preset TA value list stores different measurement value intervals included in the TA value and the index corresponding to each of the measurement value intervals.
- the first message is an improved F1 interface message or a customized F1 interface message; the improved F1 interface message is obtained by extending the original F1 interface message.
- each functional unit in various embodiments of the present disclosure may be integrated into one processing unit, or each unit may exist physically alone, or two or more units may be integrated into one unit.
- the above integrated units can be implemented in the form of hardware or software functional units.
- the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it may be stored in a processor-readable storage medium.
- the technical solution of the present disclosure is essentially or contributes to the relevant technology or the part of the technical solution. All or part of it can be embodied in the form of a software product.
- the computer software product is stored in a storage medium and includes a number of instructions to cause a computer device (which can be a personal computer, a server, or a network device, etc.) or a processor ( processor) to perform all or part of the steps of the methods described in various embodiments of the present disclosure.
- the aforementioned storage media include: U disk, mobile hard disk, read-only memory (ROM), random access memory (RAM), magnetic disk or optical disk and other media that can store program code. .
- embodiments of the present disclosure also provide a computer-readable storage medium that stores a computer program, and the computer program is used to cause the computer to execute the TA transmission method provided by the above embodiments.
- the computer-readable storage medium may be any available media or data storage device that can be accessed by a computer, including but not limited to magnetic storage (such as floppy disks, hard disks, magnetic tapes, magneto-optical disks (MO), etc.), optical storage (such as CD, DVD, BD, HVD, etc.), and semiconductor memories (such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid state drive (SSD)), etc.
- magnetic storage such as floppy disks, hard disks, magnetic tapes, magneto-optical disks (MO), etc.
- optical storage such as CD, DVD, BD, HVD, etc.
- semiconductor memories such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid state drive (SSD)
- GSM global system of mobile communication
- CDMA code division multiple access
- WCDMA wideband code division multiple access
- GPRS general packet Wireless service
- LTE long term evolution
- FDD frequency division duplex
- TDD LTE time division duplex
- UMTS Universal mobile system
- WiMAX global interoperability for microwave access
- NR 5G New Radio
- the terminal involved in the embodiments of the present disclosure may be a device that provides voice and/or data connectivity to users, a handheld device with a wireless connection function, or other processing devices connected to a wireless modem, etc.
- the name of the terminal may be different.
- the terminal may be called user equipment (User Equipment, UE).
- Wireless terminal equipment can communicate with one or more core networks (Core Network, CN) via the Radio Access Network (RAN).
- the wireless terminal equipment can be a mobile terminal equipment, such as a mobile phone (also known as a "cell phone").
- Wireless terminal equipment can also be called a system, a subscriber unit, a subscriber station, a mobile station, a mobile station, a remote station, and an access point.
- remote terminal equipment remote terminal equipment
- access terminal equipment access terminal
- user terminal user terminal
- user agent user agent
- user device user device
- the network device involved in the embodiment of the present disclosure may be a base station, and the base station may include multiple cells that provide services for terminals.
- a base station can also be called an access point, or it can be a device in the access network that communicates with wireless terminal equipment through one or more sectors on the air interface, or it can be named by another name.
- the network device may be used to exchange received air frames with Internet Protocol (IP) packets and act as a router between the wireless terminal device and the rest of the access network, where the remainder of the access network may include the Internet Protocol (IP) communication network.
- IP Internet Protocol
- Network devices also coordinate attribute management of the air interface.
- the network device involved in the embodiment of the present disclosure can be a network device (Base Transceiver Station, BTS) in the Global System for Mobile communications (GSM) or Code Division Multiple Access (CDMA), or it can be a bandwidth code division multiple access
- the network equipment (NodeB) in the access (Wide-band Code Division Multiple Access, WCDMA), or the evolutionary network equipment (evolutional Node B, eNB or e-NodeB) in the long term evolution (long term evolution, LTE) system ), the 5G base station (gNB) in the 5G network architecture (next generation system), or the Home evolved Node B (HeNB), relay node, home base station (femto), pico base station ( pico), etc.
- network devices may include centralized unit (CU) nodes and distributed unit (DU) nodes, and the centralized units and distributed units may also be arranged geographically separately.
- MIMO transmission can be single-user MIMO (Single User MIMO, SU-MIMO) or multi-user MIMO. (Multiple User MIMO, MU-MIMO). Depending on the shape and number of root antenna combinations, MIMO transmission can be 2D-MIMO, 3D-MIMO, FD-MIMO or massive-MIMO, or it can be diversity transmission, precoding transmission or beamforming transmission, etc.
- embodiments of the present disclosure may be provided as methods, systems, or computer program products. Accordingly, the present disclosure may take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment that combines software and hardware aspects. Furthermore, the present disclosure may take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, magnetic disk storage, optical storage, and the like) embodying computer-usable program code therein.
- a computer-usable storage media including, but not limited to, magnetic disk storage, optical storage, and the like
- a flow diagram represents a process or processes and/or a block diagram represents the means for specifying a function in a block or blocks.
- processor-executable instructions may also be stored in a processor-readable memory that causes a computer or other programmable data processing apparatus to operate in a particular manner, such that the generation of instructions stored in the processor-readable memory includes the manufacture of the instruction means product, the instruction device implements the function specified in one process or multiple processes in the flow chart and/or one block or multiple blocks in the block diagram.
- processor-executable instructions may also be loaded onto a computer or other programmable data processing device, causing a series of operational steps to be performed on the computer or other programmable device to produce computer-implemented processing, thereby causing the computer or other programmable device to
- the instructions that are executed provide steps for implementing the functions specified in a process or processes of the flowchart diagrams and/or a block or blocks of the block diagrams.
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Abstract
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- 一种时间提前量TA传输的方法,应用于候选分布单元DU,包括:向目标集中单元CU发送第一消息;所述第一消息携带目标终端在第一候选小区对应的TA值,或,携带目标终端在指定候选小区对应的TA值;所述第一候选小区是所述候选DU对应的候选小区;所述指定候选小区为所述第一候选小区中的一个或多个。
- 根据权利要求1所述的TA传输的方法,其中,在所述第一消息携带目标终端在第一候选小区对应的TA值的情况下,所述第一消息包括以下一项或多项:所述目标终端的标识;所述第一候选小区的标识信息;所述第一候选小区的频点信息;所述第一候选小区对应的上行信号波束的指示信息;所述TA值的指示信息,用于指示所述第一消息中是否携带TA值;所述第一候选小区对应的TA值。
- 根据权利要求1所述的TA传输的方法,其中,在所述第一消息携带目标终端在指定候选小区对应的TA值的情况下,所述第一消息包括以下一项或多项:所述目标终端的标识;所述指定候选小区的标识信息;所述指定候选小区的频点信息;各所述指定候选小区对应的上行信号波束的指示信息;所述TA值的指示信息,用于指示所述第一消息中是否携带TA值;所述指定候选小区对应的TA值。
- 根据权利要求3所述的TA传输的方法,其中,所述向目标CU发送第一消息之前,包括:接收目标CU发送的上报配置消息,所述上报配置消息用于配置所述候 选DU上报目标终端在指定候选小区对应的TA值的上报规则;或,接收目标CU发送的第一请求消息,所述第一请求消息用于从所述候选DU获取所述候选DU确定的第一TA值,所述第一TA值是所述目标终端在指定候选小区对应的TA值。
- 根据权利要求4所述的TA传输的方法,其中,所述上报配置消息包括以下一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA上报周期;所述TA上报周期为上行参考信号的测量周期的正整数倍;TA上报次数阈值,用于指示所述候选DU测量并得到TA值的次数达到所述TA上报次数阈值后,上报所述DU测量并得到TA值中最后一次的TA值;TA上报格式,用于指示所述TA上报的TA值的表示方式。
- 根据权利要求4所述的TA传输的方法,其中,所述第一请求消息,包括以下任一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA请求标识,用于指示以单个所述候选小区为单位,获取所述目标终端在所述候选小区对应的TA值。
- 根据权利要求2所述的TA传输的方法,其中,所述第一候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求3至6中任一所述的TA传输的方法,其中,所述指定候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求2或3所述的TA传输的方法,其中,所述上行信号波束的指示信息,包括以下一项或多项:所述上行信号波束的波束索引;所述上行信号波束的传输配置指示索引;所述上行信号波束对应的空间关系。
- 根据权利要求5所述的TA传输的方法,其中,所述TA上报格式,包括以下任一项:直接上报TA的测量值;上报TA的测量值的变化量,所述TA测量值的变化量为当前时刻TA的测量值和预设参考值之间的差值,或当前时刻TA的测量值和上一时刻TA的测量值之间的差值;上报所述TA的测量值在预设TA值列表中对应的索引,所述预设TA值列表中存储所述TA值包括的不同测量值区间以及每个所述测量值区间对应的索引。
- 根据权利要求1至4中任一所述的TA传输的方法,其中,所述第一消息是改进的F1接口消息,或自定义的F1接口消息;所述改进的F1接口消息是扩展原有的F1接口消息得到的。
- 一种时间提前量TA传输的方法,应用于服务分布单元DU,包括:向目标集中单元CU发送第二请求消息,用于获取候选DU确定的第一TA值,所述第一TA值是目标终端在指定候选小区对应的TA值;所述指定候选小区是第一候选小区中的一个或多个;所述第一候选小区是所述候选DU对应的候选小区;所述目标CU存储所有所述候选DU确定的第一TA值。
- 根据权利要求12所述的TA传输的方法,其中,所述第二请求消息包括以下任一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA请求标识,用于指示以单个所述候选小区为单位,获取所述目标终端在所述候选小区对应的TA值。
- 根据权利要求13所述的TA传输的方法,其中,所述指定候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求12至14中任一所述的TA传输的方法,其中,所述第二请求消息是通过改进的F1接口消息发送的,或自定义的F1接口消息发送的;所述改进的F1接口消息是扩展原有的F1接口消息得到的。
- 一种时间提前量TA传输的方法,应用于目标集中单元CU,包括:接收候选分布单元DU发送的第一消息;基于所述第一消息,确定目标终端在第一候选小区对应的TA值,或,所述目标终端在指定候选小区对应的TA值;所述第一消息携带所述目标终端在第一候选小区对应的TA值,或,携带目标终端在指定候选小区对应的TA值;所述第一候选小区是所述候选DU对应的候选小区;所述指定候选小区为所述第一候选小区中的一个或多个。
- 根据权利要求16所述的TA传输的方法,其中,在所述第一消息携带目标终端在指定候选小区对应的TA值的情况下,所述接收候选DU发送的第一消息之前,包括:向所述候选DU发送上报配置消息,所述上报配置消息用于配置所述候选DU上报所述目标终端在第一候选小区对应的TA值的上报规则;或,向所述候选DU发送第一请求消息,所述第一请求消息用于获取所述候选DU确定的所述目标终端在指定候选小区对应的TA值。
- 根据权利要求17所述的TA传输的方法,其中,所述上报配置消息包括以下一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA上报周期;所述TA上报周期为上行参考信号的测量周期的正整数倍;TA上报次数阈值,用于指示所述候选DU测量并得到TA值的次数达到所述TA上报次数阈值后,上报所述DU测量并得到TA值中最后一次的TA值;TA上报格式,用于指示所述TA上报的TA值的表示方式。
- 根据权利要求17所述的TA传输的方法,其中,所述第一请求消息,包括以下任一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA请求标识,用于指示以单个所述候选小区为单位,获取所述目标终端在所述候选小区对应的TA值。
- 根据权利要求16至19中任一所述的TA传输的方法,其中,所述指定候选小区是根据指定候选小区的标识信息确定的,所述指定候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求16至19中任一所述的TA传输的方法,其中,所述第一候选小区是根据第一候选小区的标识信息确定的,所述第一候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求18所述的TA传输的方法,其中,所述TA上报格式,包括以下任一项:直接上报TA的测量值;上报TA的测量值的变化量,所述TA测量值的变化量为当前时刻TA的测量值和预设参考值之间的差值,或当前时刻TA的测量值和上一时刻TA的测量值之间的差值;上报所述TA的测量值在预设TA值列表中对应的索引,所述预设TA值列表中存储所述TA值包括的不同测量值区间以及每个所述测量值区间对应 的索引。
- 根据权利要求16至19中任一所述的TA传输的方法,其中,所述第一消息是改进的F1接口消息,或自定义的F1接口消息;所述改进的F1接口消息是扩展原有的F1接口消息得到的。
- 一种分布单元DU,包括存储器,收发机,处理器;存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:向目标集中单元CU发送第一消息;所述第一消息携带目标终端在第一候选小区对应的时间提前量TA值,或,携带目标终端在指定候选小区对应的TA值;所述第一候选小区是候选DU对应的候选小区;所述指定候选小区为所述第一候选小区中的一个或多个。
- 根据权利要求24所述的DU,其中,在所述第一消息携带目标终端在第一候选小区对应的TA值的情况下,所述第一消息包括以下一项或多项:所述目标终端的标识;所述第一候选小区的标识信息;所述第一候选小区的频点信息;所述第一候选小区对应的上行信号波束的指示信息;所述TA值的指示信息,用于指示所述第一消息中是否携带TA值;所述第一候选小区对应的TA值。
- 根据权利要求24所述的DU,其中,在所述第一消息携带目标终端在指定候选小区对应的TA值的情况下,所述第一消息包括以下一项或多项:所述目标终端的标识;所述指定候选小区的标识信息;所述指定候选小区的频点信息;各所述指定候选小区对应的上行信号波束的指示信息;所述TA值的指示信息,用于指示所述第一消息中是否携带TA值;所述指定候选小区对应的TA值。
- 根据权利要求26所述的DU,其中,所述向目标CU发送第一消息之前,包括:接收目标CU发送的上报配置消息,所述上报配置消息用于配置所述候选DU上报目标终端在指定候选小区对应的TA值的上报规则;或,接收目标CU发送的第一请求消息,所述第一请求消息用于从所述候选DU获取所述候选DU确定的第一TA值,所述第一TA值是所述目标终端在指定候选小区对应的TA值。
- 根据权利要求27所述的DU,其中,所述上报配置消息包括以下一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA上报周期;所述TA上报周期为上行参考信号的测量周期的正整数倍;TA上报次数阈值,用于指示所述候选DU测量并得到TA值的次数达到所述TA上报次数阈值后,上报所述DU测量并得到TA值中最后一次的TA值;TA上报格式,用于指示所述TA上报的TA值的表示方式。
- 根据权利要求27所述的DU,其中,所述第一请求消息,包括以下任一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA请求标识,用于指示以单个所述候选小区为单位,获取所述目标终端在所述候选小区对应的TA值。
- 根据权利要求25所述的DU,其中,所述第一候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求26至29中任一所述的DU,其中,所述指定候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求25或26所述的DU,其中,所述上行信号波束的指示信息,包括以下一项或多项:所述上行信号波束的波束索引;所述上行信号波束的传输配置指示索引;所述上行信号波束对应的空间关系。
- 根据权利要求28所述的DU,其中,所述TA上报格式,包括以下任一项:直接上报TA的测量值;上报TA的测量值的变化量,所述TA测量值的变化量为当前时刻TA的测量值和预设参考值之间的差值,或当前时刻TA的测量值和上一时刻TA的测量值之间的差值;上报所述TA的测量值在预设TA值列表中对应的索引,所述预设TA值列表中存储所述TA值包括的不同测量值区间以及每个所述测量值区间对应的索引。
- 根据权利要求24至27中任一所述的DU,其中,所述第一消息是改进的F1接口消息,或自定义的F1接口消息;所述改进的F1接口消息是扩展原有的F1接口消息得到的。
- 一种分布单元DU,包括存储器,收发机,处理器;存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:向目标集中单元CU发送第二请求消息,用于获取候选DU确定的第一时间提前量TA值,所述第一TA值是目标终端在指定候选小区对应的TA值;所述指定候选小区是第一候选小区中的一个或多个;所述第一候选小区是所述候选DU对应的候选小区;所述目标CU存储所有所述候选DU确定的第一TA值。
- 根据权利要求35所述的DU,其中,所述第二请求消息包括以下任一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA请求标识,用于指示以单个所述候选小区为单位,获取所述目标终端在所述候选小区对应的TA值。
- 根据权利要求36所述的DU,其中,所述指定候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求35至37中任一所述的DU,其中,所述第二请求消息是通过改进的F1接口消息发送的,或自定义的F1接口消息发送的;所述改进的F1接口消息是扩展原有的F1接口消息得到的。
- 一种集中单元CU,包括存储器,收发机,处理器;存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:接收候选分布单元DU发送的第一消息;基于所述第一消息,确定目标终端在第一候选小区对应的时间提前量TA值,或,所述目标终端在指定候选小区对应的TA值;所述第一消息携带所述目标终端在第一候选小区对应的TA值,或,携带所述目标终端在指定候选小区对应的TA值;所述第一候选小区是所述候选DU对应的候选小区;所述指定候选小区为所述第一候选小区中的一个或多个。
- 根据权利要求39所述的CU,其中,在所述第一消息携带目标终端在指定候选小区对应的TA值的情况下,所述接收候选DU发送的第一消息之前,包括:向所述候选DU发送上报配置消息,所述上报配置消息用于配置所述候选DU上报所述目标终端在第一候选小区对应的TA值的上报规则;或,向所述候选DU发送第一请求消息,所述第一请求消息用于获取所述候选DU确定的所述目标终端在指定候选小区对应的TA值。
- 根据权利要求40所述的CU,其中,所述上报配置消息包括以下一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA上报周期;所述TA上报周期为上行参考信号的测量周期的正整数倍;TA上报次数阈值,用于指示所述候选DU测量并得到TA值的次数达到所述TA上报次数阈值后,上报所述DU测量并得到TA值中最后一次的TA值;TA上报格式,用于指示所述TA上报的TA值的表示方式。
- 根据权利要求40所述的CU,其中,所述第一请求消息,包括以下任一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA请求标识,用于指示以单个所述候选小区为单位,获取所述目标终端在所述候选小区对应的TA值。
- 根据权利要求39至42中任一所述的CU,其中,所述指定候选小区是根据指定候选小区的标识信息确定的,所述指定候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求39至42中任一所述的CU,其中,所述第一候选小区是根据第一候选小区的标识信息确定的,所述第一候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求41所述的CU,其中,所述TA上报格式,包括以下 任一项:直接上报TA的测量值;上报TA的测量值的变化量,所述TA测量值的变化量为当前时刻TA的测量值和预设参考值之间的差值,或当前时刻TA的测量值和上一时刻TA的测量值之间的差值;上报所述TA的测量值在预设TA值列表中对应的索引,所述预设TA值列表中存储所述TA值包括的不同测量值区间以及每个所述测量值区间对应的索引。
- 根据权利要求39至42中任一所述的CU,其中,所述第一消息是改进的F1接口消息,或自定义的F1接口消息;所述改进的F1接口消息是扩展原有的F1接口消息得到的。
- 一种时间提前量TA传输的装置,应用于候选分布单元DU,包括:第一发送模块,用于向目标集中单元CU发送第一消息;所述第一消息携带目标终端在第一候选小区对应的TA值,或,携带目标终端在指定候选小区对应的TA值;所述第一候选小区是所述候选DU对应的候选小区;所述指定候选小区为所述第一候选小区中的一个或多个。
- 根据权利要求47所述的TA传输的装置,其中,在所述第一消息携带目标终端在第一候选小区对应的TA值的情况下,所述第一消息包括以下一项或多项:所述目标终端的标识;所述第一候选小区的标识信息;所述第一候选小区的频点信息;所述第一候选小区对应的上行信号波束的指示信息;所述TA值的指示信息,用于指示所述第一消息中是否携带TA值;所述第一候选小区对应的TA值。
- 根据权利要求47所述的TA传输的装置,其中,在所述第一消息携带目标终端在指定候选小区对应的TA值的情况下,所述第一消息包括以下 一项或多项:所述目标终端的标识;所述指定候选小区的标识信息;所述指定候选小区的频点信息;各所述指定候选小区对应的上行信号波束的指示信息;所述TA值的指示信息,用于指示所述第一消息中是否携带TA值;所述指定候选小区对应的TA值。
- 根据权利要求49所述的TA传输的装置,其中,所述装置还包括第一接收模块,用于:接收目标CU发送的上报配置消息,所述上报配置消息用于配置所述候选DU上报目标终端在指定候选小区对应的TA值的上报规则;或,接收目标CU发送的第一请求消息,所述第一请求消息用于从所述候选DU获取所述候选DU确定的第一TA值,所述第一TA值是目标终端在指定候选小区对应的TA值。
- 根据权利要求50所述的TA传输的装置,其中,所述上报配置消息包括以下一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA上报周期;所述TA上报周期为上行参考信号的测量周期的正整数倍;TA上报次数阈值,用于指示所述候选DU测量并得到TA值的次数达到所述TA上报次数阈值后,上报所述DU测量并得到TA值中最后一次的TA值;TA上报格式,用于指示所述TA上报的TA值的表示方式。
- 根据权利要求50所述的TA传输的装置,其中,所述第一请求消息,包括以下任一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA请求标识,用于指示以单个所述候选小区为单位,获取所述目标终端在所述候选小区对应的TA值。
- 根据权利要求48所述的TA传输的装置,其中,所述第一候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求49至52中任一所述的TA传输的装置,其中,所述指定候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求48或49中任一所述的TA传输的装置,其中,所述上行信号波束的指示信息,包括以下一项或多项:所述上行信号波束的波束索引;所述上行信号波束的传输配置指示索引;所述上行信号波束对应的空间关系。
- 根据权利要求51所述的TA传输的装置,其中,所述TA上报格式,包括以下任一项:直接上报TA的测量值;上报TA的测量值的变化量,所述TA测量值的变化量为当前时刻TA的测量值和预设参考值之间的差值,或当前时刻TA的测量值和上一时刻TA的测量值之间的差值;上报所述TA的测量值在预设TA值列表中对应的索引,所述预设TA值列表中存储所述TA值包括的不同测量值区间以及每个所述测量值区间对应的索引。
- 根据权利要求47至50中任一所述的TA传输的装置,其中,所述第一消息是改进的F1接口消息,或自定义的F1接口消息;所述改进的F1接口消息是扩展原有的F1接口消息得到的。
- 一种时间提前量TA传输的装置,应用于服务分布单元DU,包括:第二发送模块,用于向目标集中单元CU发送第二请求消息,用于获取候选DU确定的第一TA值,所述第一TA值是目标终端在指定候选小区对应的TA值;所述指定候选小区是第一候选小区中的一个或多个;所述第一候选小区是所述候选DU对应的候选小区;所述目标CU存储所有所述候选DU确定的第一TA值。
- 根据权利要求58所述的TA传输的装置,其中,所述第二请求消息包括以下任一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA请求标识,用于指示以单个所述候选小区为单位,获取所述目标终端在所述候选小区对应的TA值。
- 根据权利要求59所述的TA传输的装置,其中,所述指定候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求58至60中任一所述的TA传输的装置,其中,所述第二请求消息是通过改进的F1接口消息发送的,或自定义的F1接口消息发送的;所述改进的F1接口消息是扩展原有的F1接口消息得到的。
- 一种时间提前量TA传输的装置,应用于目标集中单元CU,包括:第三接收模块,用于接收候选分布单元DU发送的第一消息;第三确定模块,用于基于所述第一消息,确定目标终端在第一候选小区对应的TA值,或,所述目标终端在指定候选小区对应的TA值;所述第一消息携带所述目标终端在第一候选小区对应的TA值,或,携带所述目标终端在指定候选小区对应的TA值;所述第一候选小区是所述候选DU对应的候选小区;所述指定候选小区为所述第一候选小区中的一个或多个。
- 根据权利要求62所述的TA传输的装置,其中,所述装置还包括第 三发送模块,用于:向所述候选DU发送上报配置消息,所述上报配置消息用于配置所述候选DU上报所述目标终端在第一候选小区对应的TA值的上报规则;或,向所述候选DU发送第一请求消息,所述第一请求消息用于获取所述候选DU确定的所述目标终端在指定候选小区对应的TA值。
- 根据权利要求63所述的TA传输的装置,其中,所述上报配置消息包括以下一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA上报周期;所述TA上报周期为上行参考信号的测量周期的正整数倍;TA上报次数阈值,用于指示所述候选DU测量并得到TA值的次数达到所述TA上报次数阈值后,上报所述DU测量并得到TA值中最后一次的TA值;TA上报格式,用于指示所述TA上报的TA值的表示方式。
- 根据权利要求63所述的TA传输的装置,其中,所述第一请求消息,包括以下任一项或多项:所述目标终端的标识;指定候选小区的标识信息;所述指定候选小区的频点信息;TA请求标识,用于指示以单个所述候选小区为单位,获取所述目标终端在所述候选小区对应的TA值。
- 根据权利要求62至65中任一所述的TA传输的装置,其中,所述指定候选小区是根据指定候选小区的标识信息确定的,所述指定候选小区的标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求62至65中任一所述的TA传输的装置,其中,所述第一候选小区是根据第一候选小区的标识信息确定的,所述第一候选小区的 标识信息为自定义的小区标识、新空口小区全局标识、物理小区标识、和全球小区识别码中的任一种。
- 根据权利要求64所述的TA传输的装置,其中,所述TA上报格式,包括以下任一项:直接上报TA的测量值;上报TA的测量值的变化量,所述TA测量值的变化量为当前时刻TA的测量值和预设参考值之间的差值,或当前时刻TA的测量值和上一时刻TA的测量值之间的差值;上报所述TA的测量值在预设TA值列表中对应的索引,所述预设TA值列表中存储所述TA值包括的不同测量值区间以及每个所述测量值区间对应的索引。
- 根据权利要求62至65中任一所述的TA传输的装置,其中,所述第一消息是改进的F1接口消息,或自定义的F1接口消息;所述改进的F1接口消息是扩展原有的F1接口消息得到的。
- 一种计算机可读存储介质,所述计算机可读存储介质存储有计算机程序,所述计算机程序用于使计算机执行权利要求1至11中任一项所述的方法,或执行权利要求12至15中任一项所述的方法,或执行权利要求16至23中任一项所述的方法。
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| CN110167051A (zh) * | 2018-02-14 | 2019-08-23 | 华为技术有限公司 | 集中式单元-分布式单元架构下的通信方法、通信设备 |
| CN111954272A (zh) * | 2016-09-28 | 2020-11-17 | 华为技术有限公司 | 一种数据传输的方法及设备 |
| CN113518417A (zh) * | 2020-04-09 | 2021-10-19 | 华为技术有限公司 | 一种通信方法和装置 |
| CN114258092A (zh) * | 2020-09-24 | 2022-03-29 | 大唐移动通信设备有限公司 | 定时提前补偿方法、基站、终端和存储介质 |
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| CN107148086A (zh) * | 2017-07-10 | 2017-09-08 | 北京佰才邦技术有限公司 | 一种信息交互的方法和装置、分布式单元及计算机可读介质 |
| CN110167051A (zh) * | 2018-02-14 | 2019-08-23 | 华为技术有限公司 | 集中式单元-分布式单元架构下的通信方法、通信设备 |
| CN113518417A (zh) * | 2020-04-09 | 2021-10-19 | 华为技术有限公司 | 一种通信方法和装置 |
| CN114258092A (zh) * | 2020-09-24 | 2022-03-29 | 大唐移动通信设备有限公司 | 定时提前补偿方法、基站、终端和存储介质 |
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