WO2024031475A1 - Method for qoe measurement - Google Patents
Method for qoe measurement Download PDFInfo
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- WO2024031475A1 WO2024031475A1 PCT/CN2022/111566 CN2022111566W WO2024031475A1 WO 2024031475 A1 WO2024031475 A1 WO 2024031475A1 CN 2022111566 W CN2022111566 W CN 2022111566W WO 2024031475 A1 WO2024031475 A1 WO 2024031475A1
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- qoe
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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
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L41/00—Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
- H04L41/08—Configuration management of networks or network elements
- H04L41/0803—Configuration setting
- H04L41/0806—Configuration setting for initial configuration or provisioning, e.g. plug-and-play
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L41/00—Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
- H04L41/50—Network service management, e.g. ensuring proper service fulfilment according to agreements
- H04L41/5061—Network service management, e.g. ensuring proper service fulfilment according to agreements characterised by the interaction between service providers and their network customers, e.g. customer relationship management
- H04L41/5067—Customer-centric QoS measurements
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L43/00—Arrangements for monitoring or testing data switching networks
- H04L43/06—Generation of reports
- H04L43/065—Generation of reports related to network devices
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L43/00—Arrangements for monitoring or testing data switching networks
- H04L43/16—Threshold monitoring
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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
- H04W74/00—Wireless channel access
- H04W74/002—Transmission of channel access control information
- H04W74/004—Transmission of channel access control information in the uplink, i.e. towards network
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/20—Manipulation of established connections
- H04W76/27—Transitions between radio resource control [RRC] states
Definitions
- This document is directed generally to wireless communications, in particular to 5 th generation 5G wireless communications, e.g. 5G New Radio (5G NR) , and more particularly to QoE measurement.
- 5G NR 5G New Radio
- QoE Quality of Experience
- An NR (New Radio) QMC (QoE measurement collection) function is activated by OAM (operations, administration and maintenance) via a separate QMC framework.
- OAM operations, administration and maintenance
- the QMC configuration for a specific UE is sent from OAM to CN (Core Network) , and then the CN sends the QMC configuration to a Radio Access Node (RAN) node via UE-associated signalling.
- RAN Radio Access Node
- the OAM sends the QMC configuration to a RAN node, and the RAN selects UEs which satisfies the condition for QoE measurement and sends the configuration to the UEs.
- RAN visible QoE is a sub-feature of QoE.
- the RAN can configure the RAN visible QoE based on its own requirement, when the QoE has been activated.
- the RAN visible QoE should be associated with QoE by the measurement id of QoE.
- the UE collects the RAN visible QoE measurement results and reports them to RAN node.
- the RAN node would use the measurement results for network optimisation.
- the CU should transfer the RAN visible QoE measurement results to the DU via F1AP.
- the QoE measurements need to be further enhanced.
- This document relates to methods, systems, and devices for QoE measurement.
- the present disclosure relates to a wireless communication method for use in a wireless terminal, the method comprising:
- non-connected state comprises an idle state and/or an inactive state.
- the method in particular the QoE measurement configuration for the non-connected state, more particularly receiving the QoE measurement configuration for the non-connected state comprises:
- the indication is in a radio resource control, RRC, reconfiguration message or an RRC resume message.
- the QoE measurement configuration in the non-connected state comprises:
- the QoE measurement configuration in the non-connected state comprises:
- the QoE configuration for the non-connected state is determined based on the QoE measurement configuration for the connected state and the modification information in an RRC release message.
- the QoE measurement configuration for the non-connected state is an application layer measurement configuration, AppLayerMeasConfig, and the QoE measurement configuration comprises at least one of:
- the wireless terminal is in the non-connected state, and preferably the method further comprises:
- the QoE measurement information relates to a QoE report.
- the wireless terminal is in the non-connected state, and preferably the method further comprises:
- the QoE measurement information is transmitted in a message 3 or a message 5 of a random access procedure for switching to the connected state.
- the switching to the connected state based on at least one triggering condition comprises:
- the QoE, measurement configuration is associated with at least one of an augmented reality service, a mixed reality service or a multicast and broadcast service, and the QoE measurement information comprises at least one of:
- the at least one triggering event comprises at least one of:
- one or more indicators in the QoE measurement report respectively exceed one or more thresholds corresponding to the one or more indicators.
- the method further comprises:
- the present disclosure further relates to a wireless terminal comprising a processor configured to receive, from a wireless network node, a quality of experience, QoE, measurement configuration for a non-connected state, wherein the non-connected state comprises an idle state and/or an inactive state.
- a wireless terminal comprising a processor configured to receive, from a wireless network node, a quality of experience, QoE, measurement configuration for a non-connected state, wherein the non-connected state comprises an idle state and/or an inactive state.
- the processor is further configured to perform the method as outlined above.
- the present disclosure further relates to a wireless communication method for use in a wireless network node, the method comprising:
- non-connected state comprises an idle state and/or an inactive state.
- the QoE measurement configuration for the non-connected state comprises at least one of:
- the wireless terminal is in the non-connected state, and preferably the method further comprises at least one of:
- QoE measurement information relates to a QoE report.
- the QoE measurement configuration is associated with at least one of an augmented reality service, a mixed reality service or a multicast and broadcast service, and the QoE measurement information comprises at least one of:
- the at least one triggering event comprises at least one of:
- one or more indicators in the QoE measurement report respectively exceed one or more thresholds corresponding to the one or more indicators.
- the method further comprises:
- the present disclosure further relates to a wireless network node comprising a processor configured to: transmit, to a wireless terminal, a quality of experience, QoE, measurement configuration for a non-connected state, wherein the non-connected state comprises an idle state and/or an inactive state.
- a wireless network node comprising a processor configured to: transmit, to a wireless terminal, a quality of experience, QoE, measurement configuration for a non-connected state, wherein the non-connected state comprises an idle state and/or an inactive state.
- the processor is further configured to perform the method as outlined above.
- the present disclosure further relates to a wireless communication method for use in a wireless terminal, the method comprising:
- first wireless network node is one of a master node and a secondary node and the second wireless network node is another one of the master node and the secondary node.
- the method further comprises:
- the method further comprises:
- the method further comprises:
- the indication is in downlink control information, a radio resource control message or a media access control control element.
- the QoE measurement information is transmitted to the master node via a signaling radio bearer 4, and the QoE measurement information is transmitted to the secondary node via at least one of a signaling radio bearer 3, a split signaling radio bearer 4 or a signaling radio bearer configured for reporting the QoE measurement information associated with the dual-connected mode.
- the method further comprises:
- assistance information comprises at least one of:
- the QoE measurement configuration is associated with at least one of an augmented reality service, a mixed reality service or a multicast and broadcast service, and wherein the wireless communication method further comprises:
- the present disclosure further relates to a wireless terminal comprising a processor configured to: receive, from a first wireless network node or a second wireless network node, a quality of experience, QoE, measurement configuration for a dual-connectivity mode, wherein the first wireless network node is one of a master node and a secondary node and the second wireless network node is another one of the master node and the secondary node.
- a wireless terminal comprising a processor configured to: receive, from a first wireless network node or a second wireless network node, a quality of experience, QoE, measurement configuration for a dual-connectivity mode, wherein the first wireless network node is one of a master node and a secondary node and the second wireless network node is another one of the master node and the secondary node.
- the processor is further configured to perform the method as outlined above.
- the present disclosure further relates to a wireless communication method for use in a first wireless network node, the method comprising:
- the first wireless network node is one of a master node and a secondary node connected to the wireless terminal.
- the method further comprises:
- the method further comprises:
- the indication is in downlink control information, a radio resource control message or a media access control control element.
- the QoE measurement information is received via a signaling radio bearer 4, and the QoE measurement information is received via at least one of a signaling radio bearer 3, a split signaling radio bearer 4 or a signaling radio bearer configured for reporting the QoE measurement information associated with the dual-connected mode.
- the method further comprises:
- assistance information comprises at least one of:
- the present disclosure further relates to a first wireless network node comprising a processor configured to: receive, from a wireless terminal, quality of experience, QoE, measurement information associated with a dual-connectivity mode, wherein the first wireless network node is one of a master node and a secondary node connected to the wireless terminal.
- the processor is further configured to perform the method as outlined above.
- the present disclosure further relates to a wireless communication method for use in a source wireless network node, the method comprising:
- a handover required message comprising a first quality of experience, QoE, configuration of the source wireless network node,
- a signaling comprising a second QoE configuration of a target wireless network node, wherein the first QoE configuration is different from the second QoE configuration
- the source wireless network node is one of a gNB or a next generation eNodeB, ng-eNB, and the target wireless network node is another one of the gNB and the ng-eNB.
- the first QoE configuration comprises at least one of:
- the second QoE configuration comprises at least one of:
- the present disclosure further relates to a source wireless network node comprising a processor configured to: transmit, to an access and mobility management function, a handover required message comprising a first quality of experience, QoE, configuration of the source wireless network node, receive, from the access and mobility management function, a signaling comprising a second QoE configuration of a target wireless network node, wherein the first QoE configuration is different from the second QoE configuration, receive, from the access and mobility management function, a handover command of handing over the wireless terminal to the target wireless network node, and transmit, to the wireless network node, the handover command or a dedicated signaling comprising the second QoE configuration.
- a source wireless network node comprising a processor configured to: transmit, to an access and mobility management function, a handover required message comprising a first quality of experience, QoE, configuration of the source wireless network node, receive, from the access and mobility management function, a signaling comprising a second QoE configuration of a target wireless network no
- the processor is further configured to perform any method as outlined above.
- the present disclosure relates to a computer program product comprising a computer-readable program medium code stored thereupon, the code, when executed by a processor, causing the processor to implement a wireless communication method recited in any one of the foregoing methods.
- the present disclosure is not limited to the exemplary embodiments and applications described and illustrated herein. Additionally, the specific order and/or hierarchy of steps in the methods disclosed herein are merely exemplary approaches. Based upon design preferences, the specific order or hierarchy of steps of the disclosed methods or processes can be re-arranged while remaining within the scope of the present disclosure. Thus, those of ordinary skill in the art will understand that the methods and techniques disclosed herein present various steps or acts in a sample order, and the present disclosure is not limited to the specific order or hierarchy presented unless expressly stated otherwise.
- FIG. 1 shows a schematic diagram of the transmission/reception of QoE UE capability parameters for AR, MR, MBS and other service types according to an embodiment.
- FIG. 2 shows a schematic diagram of the transmission/reception of QoE UE capability parameters in non-connected states according to an embodiment.
- FIG. 3 shows a schematic diagram of QoE measurement configuration and report in non-connected states according to an embodiment.
- FIGS. 4A to 4E show schematic diagrams of QoE measurement reporting according to an embodiment.
- FIG. 5 shows a schematic diagram of alignment of QoE measurements according to an embodiment.
- FIGS. 6A and 6B show schematic diagrams of legacy QoE measurements according to an embodiment.
- FIG. 7 shows a schematic diagram of a wireless terminal according to an embodiment.
- FIG. 8 shows a schematic diagram of a wireless network node according to an embodiment.
- FIGS. 9 to 13 show flowcharts of methods according to some embodiments of the present disclosure.
- Embodiment 1 QoE UE capability parameters for AR, MR, MBS and other service types
- FIG. 1 shows a schematic diagram of the transmission/reception of QoE UE capability parameters for AR (augmented reality) , MR (mixed reality) , MBS (multicast and broadcast service) and other service types according to an embodiment.
- AR augmented reality
- MR mixed reality
- MBS multicast and broadcast service
- the QMC Configuration Information of the core network and the RRC Reconfiguration of gNB contain the service types of AR, MR and MBS.
- the new service types that need to be supported are reported in the capability information of UE. That is, the QoE-Parameters of UE Capability Information includes QoE measurement of whether AR, MR and MBS are supported.
- Embodiment 2 QoE UE capability parameters in non-connected states
- FIG. 2 shows a schematic diagram of the transmission/reception of QoE UE capability parameters in non-connected states according to an embodiment.
- the UE Capability Information contains the indication of whether QoE measurement is supported.
- the indication includes at least one of the following: only RRC_INACTIVE measurements are supported, only RRC_IDLE measurements are supported, non-connected measurements are supported, RRC_INACTIVE and RRC_IDLE measurements are supported.
- Embodiment 3 QoE measurement configuration and report in non-connected states
- FIG. 3 shows a schematic diagram of QoE measurement configuration and report in non-connected states according to an embodiment.
- the gNB needs to configure the QoE measurement information used in the Non-CONNECTED state for the UE in CONNECTED state.
- the configuration of the above information is as follows:
- Option 1 Indicates that the currently configured QoE configuration information is also applicable to Non-CONNECTED state by default or defining an indication in RRCReconfiguration and RRCResume.
- the gNB In RRCRelease, while releasing the QoE measurement information configured by CONNECTED state, the gNB configures the QoE measurement information in Non-CONNECTED state.
- Option 3 In RRCRelease, while releasing the QoE measurement information configured by CONNECTED state, the gNB adds and modifies the current QoE measurement to Non-CONNECTED state.
- the QoE configuration information is AppLayerMeasConfig, which includes at least one of the following items: measurement Configuration App Layer To Add Modify List, measurement Configuration App Layer To Release List, RRC segmentation Allowed, measurement Configuration App Layer Id, measurement Configuration App Layer Container, service Type, pause Reporting, transmission Of Session Start Stop, slice list, Short IP information, Periodicity, Number Of Buffer Level Entries, Report Playout Delay For Media Start up.
- the processing of QoE measurement reporting for a service includes at least one of the following methods:
- the UE reports the QoE measurement information based on periodicity or event triggers.
- the UE in the non-connected state, the UE triggers a state switch to be connected based on the QoE measurement information.
- the UE in the non-connected state, sends QoE measurement information to the gNB through small data transmission (SDT) .
- the QoE measurement information contains at least one of the following: legacy QoE measurement reporting, RVQoE measurement reporting, QoE measurement reporting level value, RVQoE value, a UE application layer indication indicating the effect of user experience, slice information, QoE measurement ID, and RAN visible QoE measurement ID.
- the above information shall be sent in at least one of the following methods:
- the trigger condition includes at least one of the following: the indication information of the UE application layer, the QoE measurement reporting level exceeds a threshold, RVQoE value exceeds a threshold, and/or one or more indicators in the QoE measurement reporting exceed the corresponding threshold.
- the above threshold is carried by the core network or gNB when configuring QoE measurement parameters.
- the carrying method includes one of the following: the threshold value is included in the QoE configuration container, and/or the threshold value is included in RRC signaling.
- the UE in the non-connected state, the UE triggers to switch to connected state based on the QoE measurement information.
- the QoE measurement information includes at least one of the following: legacy QoE measurement reporting, RVQoE measurement reporting, QoE measurement reporting level value, RVQoE value, a UE application layer indication indicating the effect of user experience.
- the condition for triggering UE to enter the connected state includes at least one of the following: the indication information of the UE application layer, the QoE measurement reporting level exceeds a threshold, RVQoE value exceeds a threshold, and/or one or more indicators in the QoE measurement reporting exceed the corresponding threshold.
- the above threshold is carried by the core network or gNB when configuring QoE measurement parameters.
- the carrying method includes at least one of the following: the threshold value is included in the QoE configuration container, and/or the threshold value is included in RRC signaling.
- MSG3 or MSG5 in PRACH contains at least one of the following:
- the QoE measurement reporting an indication information indicating that there is a QoE measurement reporting triggering the state transition on the UE side.
- the gNB After entering the connected state, the gNB requests the UE to report the QoE measurement reporting based on the above indication information.
- Embodiment 4 (MN or SN sends the QoE measurement reporting to the UE)
- FIG. 4A shows a schematic diagram of QoE measurement reporting according to an embodiment.
- MCG SRB in a DC scenario supports SRB1 and SRB2 transmission, and SCG SRB supports SRB3 transmission.
- the QoE report separately introduces SRB4 with low priority to transmit the above measurement report. Therefore, it is necessary for MN to support the above measurement report transmitted by SRB4.
- SRB3 supports reporting measurement reports
- SRB3, split SRB4 or new SRB5 can be used to transmit QoE measurement reports.
- the UE indicates whether the UE supports RRC segmentation of the measurement report message in uplink.
- the above measurement reports include both RAN visible QoE and legacy QoE reports.
- the UE measurement reporting method includes at least one of the following:
- MN or SN configures QoE measurement information, and UE always sends measurement reporting to MN, as shown in FIG. 4A.
- the QoE measurement reporting is reported to MN through SRB4.
- FIG. 4B shows a schematic diagram of QoE measurement reporting according to an embodiment.
- the MN or the SN configures the QoE measurement information, and the UE always sends measurement reporting to the SN, as shown in FIG. 4B.
- the QoE measurement reporting is reported to SN through SRB3, split SRB4 or new SRB5.
- FIG. 4C shows a schematic diagram of QoE measurement reporting according to an embodiment.
- the MN or the SN configures QoE measurement information, and the UE sends measurement reporting to the MN by default.
- the MN or the SN can indicate the UE to report measurement reporting to the SN through an indication information, as shown in FIG. 4C.
- the QoE measurement reporting is reported to the MN through SRB4, and the QoE measurement reporting is also reported to the SN through SRB3, split SRB4 or new SRB5.
- the DL information includes at least one of the following: DLInformationTransfer, RRC message, MAC CE contains the indication information, and the DCI contains the indication information.
- the RRC message contains at least one of the following: RRCReestablishment, RRCReconfiguration, RRCResume, RRCReject, RRCSetup.
- FIG. 4D shows a schematic diagram of QoE measurement reporting according to an embodiment.
- the MN or the SN configures QoE measurement information, and the UE sends measurement reporting to the SN by default.
- the MN or the SN can indicate the UE to report measurement reporting to the MN through an indication information, as shown in FIG. 4D.
- the QoE measurement reporting is reported to the MN through SRB4, and the QoE measurement reporting is also reported to the SN through SRB3, split SRB4 or new SRB5.
- the DL information includes at least one of the following: DLInformationTransfer, RRC message, MAC CE contains the indication information, and the DCI contains the indication information.
- the RRC message contains at least one of the following: RRCReestablishment, RRCReconfiguration, RRCResume, RRCReject, RRCSetup.
- FIG. 4E shows a schematic diagram of QoE measurement reporting according to an embodiment.
- the MN or the SN configures QoE measurement information, and the MN or the SN can indicate the UE to report measurement reporting to the MN or the SN by an indication information, as shown in FIG. 4E.
- the QoE measurement reporting is reported to the MN through SRB4, and the QoE measurement reporting is also reported to the SN through SRB3, split SRB4 or new SRB5.
- Embodiment 5 (Alignment of QoE measurements (including legacy QoE and RAN visible QoE measurements) and MDT in NR-DC)
- FIG. 5 shows a schematic diagram of alignment of QoE measurements according to an embodiment.
- the two measurement results are correlated with assistant information in the measurement reports of legacy QoE and RAN visible QoE.
- the assistant information contains at least one of the following information: absolute timestamp, relative timestamp, slice information, QoE measurement ID, RAN visible QoE measurement ID.
- the scenario containing the above assistant information includes at least one of the following:
- - UE contains the above assistant information in reporting the QoE measurement report to SN.
- - UE contains the above assistant information in reporting the QoE measurement report to MN.
- Embodiment 6 Legacy QoE measurements during intra-5GC inter-RAT handover process
- FIG. 6A shows a schematic diagram of legacy QoE measurements according to an embodiment.
- the source gNB needs to down select one of QoE measurement collection jobs of a service type with QoE measurement continuity.
- QoE configuration 1 includes at least one of the following: service Type; measConfigAppLayerContainer-r17; QoE metric; Reporting Server information; Reporting interval; QoE Measurement Collection identifier for the session; QoE Area Scope information.
- QoE configuration 2 includes at least one of the following: measConfigAppLayer-r15; An indication of whether to support the QoE measurement of the current service; An indication of a measConfigAppLayerId that continuously performs QoE measurements; An indication instructing the UE to report according to the format of the ng-eNB after the handover is completed.
- FIG. 6B shows a schematic diagram of legacy QoE measurements according to an embodiment.
- the target gNB allocates the measConfigAppLayerId of the on-going QoEmeasurement.
- QoE configuration 1 includes at least one of the following: service Type; measConfigAppLayer-r15; QoE metric; Reporting Server information; Reporting interval; QoE Area Scope information.
- QoE configuration 2 includes at least one of the following: AppLayerMeasConfig; An indication of whether to support the QoE measurement of the current service (with An indication of a measConfigAppLayerId) ; An indication instructing the UE to report according to the format of the gNB after the handover is completed; QoE Measurement Collection identifier for the session.
- FIG. 7 relates to a schematic diagram of a wireless terminal 70 according to an embodiment of the present disclosure.
- the wireless terminal 70 may be a user equipment (UE) , a mobile phone, a laptop, a tablet computer, an electronic book or a portable computer system and is not limited herein.
- the wireless terminal 70 may include a processor 700 such as a microprocessor or Application Specific Integrated Circuit (ASIC) , a storage unit 710 and a communication unit 720.
- the storage unit 710 may be any data storage device that stores a program code 712, which is accessed and executed by the processor 700.
- Embodiments of the storage unit 712 include but are not limited to a subscriber identity module (SIM) , read-only memory (ROM) , flash memory, random-access memory (RAM) , hard-disk, and optical data storage device.
- SIM subscriber identity module
- ROM read-only memory
- RAM random-access memory
- the communication unit 720 may a transceiver and is used to transmit and receive signals (e.g. messages or packets) according to processing results of the processor 700. In an embodiment, the communication unit 720 transmits and receives the signals via at least one antenna 722 shown in FIG. 7.
- the storage unit 710 and the program code 712 may be omitted and the processor 700 may include a storage unit with stored program code.
- the processor 700 may implement any one of the steps in exemplified embodiments on the wireless terminal 70, e.g., by executing the program code 712.
- the communication unit 720 may be a transceiver.
- the communication unit 720 may as an alternative or in addition be combining a transmitting unit and a receiving unit configured to transmit and to receive, respectively, signals to and from a wireless network node (e.g. a base station) .
- a wireless network node e.g. a base station
- FIG. 8 relates to a schematic diagram of a wireless network node 80 according to an embodiment of the present disclosure.
- the wireless network node 80 may be a satellite, a base station (BS) , a network entity, a Mobility Management Entity (MME) , Serving Gateway (S-GW) , Packet Data Network (PDN) Gateway (P-GW) , a radio access network (RAN) node, a next generation RAN (NG-RAN) node, a gNB, an eNB, a gNB central unit (gNB-CU) , a gNB distributed unit (gNB-DU) a data network, a core network or a Radio Network Controller (RNC) , and is not limited herein.
- BS base station
- MME Mobility Management Entity
- S-GW Serving Gateway
- PDN Packet Data Network Gateway
- RAN radio access network
- NG-RAN next generation RAN
- gNB next generation RAN
- gNB next generation RAN
- the wireless network node 80 may comprise (perform) at least one network function such as an access and mobility management function (AMF) , a session management function (SMF) , a user place function (UPF) , a policy control function (PCF) , an application function (AF) , etc.
- the wireless network node 80 may include a processor 800 such as a microprocessor or ASIC, a storage unit 810 and a communication unit 820.
- the storage unit 810 may be any data storage device that stores a program code 812, which is accessed and executed by the processor 800. Examples of the storage unit 812 include but are not limited to a SIM, ROM, flash memory, RAM, hard-disk, and optical data storage device.
- the communication unit 820 may be a transceiver and is used to transmit and receive signals (e.g. messages or packets) according to processing results of the processor 800.
- the communication unit 820 transmits and receives the signals via at least one antenna 822 shown in FIG. 8.
- the storage unit 810 and the program code 812 may be omitted.
- the processor 800 may include a storage unit with stored program code.
- the processor 800 may implement any steps described in exemplified embodiments on the wireless network node 80, e.g., via executing the program code 812.
- the communication unit 820 may be a transceiver.
- the communication unit 820 may as an alternative or in addition be combining a transmitting unit and a receiving unit configured to transmit and to receive, respectively, signals to and from a wireless terminal (e.g. a user equipment or another wireless network node) .
- a wireless terminal e.g. a user equipment or another wireless network node
- FIG. 9 shows a flowchart of a method according to an embodiment of the present disclosure.
- FIG. 9 relates to a wireless communication method for use in a wireless terminal, the method comprising:
- non-connected state comprises an idle state and/or an inactive state.
- the method in particular the QoE measurement configuration for the non-connected state, more particularly receiving the QoE measurement configuration for the non-connected state, comprises:
- the indication is in a radio resource control, RRC, reconfiguration message or an RRC resume message.
- the QoE measurement configuration in the non-connected state comprises:
- the QoE measurement configuration in the non-connected state comprises:
- the QoE configuration for the non-connected state is determined based on the QoE measurement configuration for the connected state and the modification information in an RRC release message.
- the QoE measurement configuration for the non-connected state is an application layer measurement configuration, AppLayerMeasConfig, and the QoE measurement configuration comprises at least one of:
- the wireless terminal is in the non-connected state, and the method further comprises:
- the QoE measurement information relates to a QoE report.
- the wireless terminal is in the non-connected state, and the method further comprises:
- the QoE measurement information is transmitted in a message 3 or a message 5 of a random access procedure for switching to the connected state.
- the switching to the connected state based on at least one triggering condition comprises:
- the QoE, measurement configuration is associated with at least one of an augmented reality service, a mixed reality service or a multicast and broadcast service, and the QoE measurement information comprises at least one of:
- the at least one triggering event comprises at least one of:
- one or more indicators in the QoE measurement report respectively exceed one or more thresholds corresponding to the one or more indicators.
- the method further comprises:
- FIG. 10 shows a flowchart of a method according to an embodiment of the present disclosure.
- FIG. 10 relates to a wireless communication method for use in a wireless network node, the method comprising:
- non-connected state comprises an idle state and/or an inactive state.
- the method particularly the QoE measurement configuration for the non-connected state, more particularly transmitting the quality of experience, QoE, measurement configuration for a non-connected state, comprises at least one of:
- the wireless terminal is in the non-connected state, and the method further comprises at least one of:
- QoE measurement information relates to a QoE report.
- the QoE measurement configuration is associated with at least one of an augmented reality service, a mixed reality service or a multicast and broadcast service, and the QoE measurement information comprises at least one of:
- the at least one triggering event comprises at least one of:
- one or more indicators in the QoE measurement report respectively exceed one or more thresholds corresponding to the one or more indicators.
- the method further comprises:
- FIG. 11 shows a flowchart of a method according to an embodiment of the present disclosure.
- FIG. 11 relates to a wireless communication method for use in a wireless terminal, the method comprising:
- first wireless network node is one of a master node and a secondary node and the second wireless network node is another one of the master node and the secondary node.
- the method further comprises:
- the method further comprises:
- the method further comprises:
- the indication is in downlink control information, a radio resource control message or a media access control control element.
- the QoE measurement information is transmitted to the master node via a signaling radio bearer 4, and the QoE measurement information is transmitted to the secondary node via at least one of a signaling radio bearer 3, a split signaling radio bearer 4 or a signaling radio bearer configured for reporting the QoE measurement information associated with the dual-connected mode.
- the method further comprises:
- assistance information comprises at least one of:
- the QoE measurement configuration is associated with at least one of an augmented reality service, a mixed reality service or a multicast and broadcast service, and wherein the wireless communication method further comprises:
- FIG. 12 shows a flowchart of a method according to an embodiment of the present disclosure.
- FIG. 12 relates to a wireless communication method for use in a first wireless network node, the method comprising:
- the first wireless network node is one of a master node and a secondary node connected to the wireless terminal.
- the method further comprises:
- the method further comprises:
- the indication is in downlink control information, a radio resource control message or a media access control control element.
- the QoE measurement information is received via a signaling radio bearer 4, and the QoE measurement information is received via at least one of a signaling radio bearer 3, a split signaling radio bearer 4 or a signaling radio bearer configured for reporting the QoE measurement information associated with the dual-connected mode.
- the method further comprises:
- assistance information comprises at least one of:
- FIG. 13 shows a flowchart of a method according to an embodiment of the present disclosure.
- FIG. 13 relates to a wireless communication method for use in a source wireless network node, the method comprising:
- a handover required message comprising a first quality of experience, QoE, configuration of the source wireless network node,
- a signaling comprising a second QoE configuration of a target wireless network node, wherein the first QoE configuration is different from the second QoE configuration
- the source wireless network node is one of a gNB or a next generation eNodeB, ng-eNB, and the target wireless network node is another one of the gNB and the ng-eNB.
- the first QoE configuration comprises at least one of:
- the second QoE configuration comprises at least one of:
- the present disclosure relates to a computer program product comprising a computer-readable program medium code stored thereupon, the code, when executed by a processor, causing the processor to implement a wireless communication method recited in any one of foregoing methods.
- any reference to an element herein using a designation such as “first, “ “second, “ and so forth does not generally limit the quantity or order of those elements. Rather, these designations can be used herein as a convenient means of distinguishing between two or more elements or instances of an element. Thus, a reference to first and second elements does not mean that only two elements can be employed, or that the first element must precede the second element in some manner.
- any one of the various illustrative logical blocks, units, processors, means, circuits, methods and functions described in connection with the aspects disclosed herein can be implemented by electronic hardware (e.g., a digital implementation, an analogy implementation, or a combination of the two) , firmware, various forms of program or design code incorporating instructions (which can be referred to herein, for convenience, as "software” or a “software unit” ) , or any combination of these techniques.
- a processor, device, component, circuit, structure, machine, unit, etc. can be configured to perform one or more of the functions described herein.
- IC integrated circuit
- DSP digital signal processor
- ASIC application specific integrated circuit
- FPGA field programmable gate array
- the logical blocks, units, and circuits can further include antennas and/or transceivers to communicate with various components within the network or within the device.
- a general purpose processor can be a microprocessor, but in the alternative, the processor can be any conventional processor, controller, or state machine.
- a processor can also be implemented as a combination of computing devices, e.g., a combination of a DSP and a microprocessor, a plurality of microprocessors, one or more microprocessors in conjunction with a DSP core, or any other suitable configuration to perform the functions described herein. If implemented in software, the functions can be stored as one or more instructions or code on a computer-readable medium. Thus, the steps of a method or algorithm disclosed herein can be implemented as software stored on a computer-readable medium.
- Computer-readable media includes both computer storage media and communication media including any medium that can be enabled to transfer a computer program or code from one place to another.
- a storage media can be any available media that can be accessed by a computer.
- such computer-readable media can include RAM, ROM, EEPROM, CD-ROM or other optical disk storage, magnetic disk storage or other magnetic storage devices, or any other medium that can be used to store desired program code in the form of instructions or data structures and that can be accessed by a computer.
- unit refers to software, firmware, hardware, and any combination of these elements for performing the associated functions described herein. Additionally, for purpose of discussion, the various units are described as discrete units; however, as would be apparent to one of ordinary skill in the art, two or more units may be combined to form a single unit that performs the associated functions according embodiments of the present disclosure.
- memory or other storage may be employed in embodiments of the present disclosure.
- memory or other storage may be employed in embodiments of the present disclosure.
- any suitable distribution of functionality between different functional units, processing logic elements or domains may be used without detracting from the present disclosure.
- functionality illustrated to be performed by separate processing logic elements, or controllers may be performed by the same processing logic element, or controller.
- references to specific functional units are only references to a suitable means for providing the described functionality, rather than indicative of a strict logical or physical structure or organization.
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Abstract
Description
Claims (45)
- A wireless communication method for use in a wireless terminal, the method comprising:receiving, from a wireless network node, a quality of experience, QoE, measurement configuration for a non-connected state,wherein the non-connected state comprises an idle state and/or an inactive state.
- The wireless communication method of claim 1, wherein receiving, from the wireless network node, the QoE measurement configuration for the non-connected state comprises:receiving, from the wireless network node, an indication of the QoE measurement configuration for a connected state being applicable for the QoE measurement configuration for the non-connected state,wherein the indication is in a radio resource control, RRC, reconfiguration message or an RRC resume message.
- The wireless communication method of claim 1, wherein receiving, from the wireless network node, the QoE measurement configuration in the non-connected state comprises:receiving, from the wireless network node, the QoE measurement configuration for the non-connected state when releasing QoE measurement configuration for a connected state,wherein the QoE measurement configuration for the at least one non-connected state is in an RRC release message.
- The wireless communication method of claim 1, wherein receiving, from the wireless network node, the QoE measurement configuration in the non-connected state comprises:receiving, from the wireless network node, modification information when releasing QoE measurement configuration for a connected state,wherein the QoE configuration for the non-connected state is determined based on the QoE measurement configuration for the connected state and the modification information in an RRC release message.
- The wireless communication method of any of claims 1 to 4, wherein the QoE measurement configuration for the non-connected state is an application layer measurement configuration, AppLayerMeasConfig, and the QoE measurement configuration comprises at least one of:a measurement configuration App Layer To Add Modify List,a measurement Configuration App Layer To Release List,an RRC segmentation Allowed,a measurement Configuration App Layer identifier,a measurement Configuration App Layer Container,a service Type,a pause Reporting,a transmission Of Session Start Stop,a network slice list,short internet protocol information,a periodicity,a number of Buffer Level Entries, ora Report Playout Delay For Media Start up.
- The wireless communication method of any of claims 1 to 5, wherein the wireless terminal is in the non-connected state, andwherein the method further comprises:transmitting, to the wireless network node, QoE measurement information based on a periodicity or at least one triggering event.
- The wireless communication method of any of claims 1 to 5, wherein the wireless terminal is in the non-connected state, andwherein the method further comprises:switching to a connected state based on at least one triggering event, andtransmitting, to the wireless network node, QoE measurement information.
- The wireless communication method of claim 7, wherein the QoE measurement information is transmitted in a message 3 or a message 5 of a random access procedure for switching to the connected state.
- The wireless communication method of claim 7, wherein the switching to the connected state based on at least one triggering condition comprises:transmitting, to the wireless network node, an indication of a QoE measurement reporting being triggered, andreceiving, from the wireless network node, a request for the QoE measurement information.
- The wireless communication method of any of claims 6 to 9, wherein the QoE measurement configuration is associated with at least one of an augmented reality service, a mixed reality service or a multicast and broadcast service, and the QoE measurement information comprises at least one of:a QoE measurement report,a radio access network visible QoE, RVQoE, measurement report,a QoE measurement reporting value,a RVQoE measurement reporting value, oran application layer indication indicating an effect of user experience.
- The wireless communication method of any of claims 6 to 10, wherein the at least one triggering event comprises at least one of:an indication from an application layer,a QoE measurement reporting value exceeds a threshold,a RVQoE reporting value exceeds the threshold, orone or more indicators in the QoE measurement report respectively exceed one or more thresholds corresponding to the one or more indicators.
- The wireless communication method of any of claims 1 to 11, further comprising:transmitting, to the wireless network node, capability information of supporting QoE measurements in the non-connected state, andtransmitting, to the wireless network node, capability information of supporting QoE measurements for at least one of augmented reality service, mixed reality service or multicast and broadcast service.
- A wireless communication method for use in a wireless network node, the method comprising:transmitting, to a wireless terminal, a quality of experience, QoE, measurement configuration for a non-connected state,wherein the non-connected state comprises an idle state and/or an inactive state.
- The wireless communication method of claim 13, wherein transmitting, to the wireless terminal, the QoE measurement configuration for the non-connected state comprises at least one of:transmitting, to the wireless terminal, an indication of the QoE measurement configuration by a radio resource control, RRC, reconfiguration message or an RRC resume message, ortransmitting, to the wireless terminal, the QoE measurement configuration by RRC release message, ortransmitting, to the wireless terminal, modification information by RRC release message.
- The wireless communication method of claim 13 or 14, wherein the wireless terminal is in the non-connected state, andwherein the method further comprises at least one of:receiving, from the wireless terminal, QoE measurement information based on a periodicity or at least one triggering event, orreceiving, from the wireless terminal, an indication of a QoE measurement reporting being triggered.
- The wireless communication method of claim 15, wherein the QoE, measurement configuration is associated with at least one of an augmented reality service, a mixed reality service or a multicast and broadcast service, and the QoE measurement information comprises at least one of:a QoE measurement report,a radio access network visible QoE, RVQoE, measurement report,a QoE measurement reporting value,a RVQoE measurement reporting value, oran application layer indication indicating an effect of user experience.
- The wireless communication method of claim 16 or 17, wherein the at least one triggering event comprises at least one of:an indication from an application layer,a QoE measurement reporting value exceeds a threshold,a RVQoE reporting value exceeds the threshold, orone or more indicators in the QoE measurement report respectively exceed one or more thresholds corresponding to the one or more indicators.
- The wireless communication method of any of claims 13 to 17, further comprising:receiving, from the wireless terminal, capability information of supporting QoE measurements in the non-connected state, andreceiving, from the wireless terminal, capability information of supporting QoE measurements for at least one of augmented reality service, mixed reality service or multicast and broadcast service.
- A wireless communication method for use in a wireless terminal, the method comprising:receiving, from a first wireless network node or a second wireless network node, a quality of experience, QoE, measurement configuration for a dual-connectivity mode,wherein the first wireless network node is one of a master node and a secondary node and the second wireless network node is another one of the master node and the secondary node.
- The wireless communication method of claim 19, further comprising:transmitting QoE measurement information associated with the dual-connectivity mode to the first wireless network node based on the QoE measurement configuration for the dual-connectivity mode.
- The wireless communication method of claim 19, further comprising:transmitting, to the second wireless network node, the QoE measurement information based on the QoE measurement configuration for the dual-connectivity mode.
- The wireless communication method of claim 19, further comprising:receiving, from the first wireless network node or the second wireless network node, an indication associated with reporting the QoE measurement information, andtransmitting, to the second wireless network node or the first wireless network node, the QoE measurement information,wherein the indication is in downlink control information, a radio resource control message or a media access control control element.
- The wireless communication method of any of claims 19 to 22, wherein the QoE measurement information is transmitted to the master node via a signaling radio bearer 4, and the QoE measurement information is transmitted to the secondary node via at least one of a signaling radio bearer 3, a split signaling radio bearer 4 or a signaling radio bearer configured for reporting the QoE measurement information associated with the dual-connected mode.
- The wireless communication method of any of claims 19 to 23, further comprising:transmitting, to the first or secondary wireless network node, assistance information associated aligning measurement results in the QoE measurement information,wherein the assistance information comprises at least one of:an absolute timestamp,a relative timestamp,network slice information,a QoE measurement identifier, ora radio access network visible QoE measurement identifier.
- The wireless communication method of any of claims 19 to 24, wherein the QoE measurement configuration is associated with at least one of an augmented reality service, a mixed reality service or a multicast and broadcast service, and wherein the wireless communication method further comprises:transmitting, to the first wireless network node or the second wireless network node, capability information of supporting QoE measurements for at least one of the augmented reality service, the mixed reality service or the multicast and broadcast service.
- A wireless communication method for use in a first wireless network node, the method comprising:receiving, from a wireless terminal, quality of experience, QoE, measurement information associated with a dual-connectivity mode,wherein the first wireless network node is one of a master node and a secondary node connected to the wireless terminal.
- The wireless communication method of claim 26, further comprising:receiving, from the wireless terminal, the QoE measurement information based on the QoE measurement configuration for the dual-connectivity mode.
- The wireless communication method of claim 26, further comprising:transmitting an indication associated with reporting the QoE measurement information, andreceiving, from the wireless terminal, the QoE measurement information,wherein the indication is in downlink control information, a radio resource control message or a media access control control element.
- The wireless communication method of any of claims 26 to 28, wherein the QoE measurement information is received via a signaling radio bearer 4, and the QoE measurement information is received via at least one of a signaling radio bearer 3, a split signaling radio bearer 4 or a signaling radio bearer configured for reporting the QoE measurement information associated with the dual-connected mode.
- The wireless communication method of any of claims 26 to 29, further comprising:receiving, from the wireless terminal, assistance information associated aligning measurement results in the QoE measurement information,wherein the assistance information comprises at least one of:an absolute timestamp,a relative timestamp,network slice information,a QoE measurement identifier, ora radio access network visible QoE measurement identifier.
- A wireless communication method for use in a source wireless network node, the method comprising:transmitting, to an access and mobility management function, a handover required message comprising a first quality of experience, QoE, configuration of the source wireless network node,receiving, from the access and mobility management function, a signaling comprising a second QoE configuration of a target wireless network node, wherein the first QoE configuration is different from the second QoE configuration,receiving, from the access and mobility management function, a handover command of handing over the wireless terminal to the target wireless network node, andtransmitting, to the wireless network node, the handover command or a dedicated signaling comprising the second QoE configuration.
- The wireless communication method of claim 31, wherein the source wireless network node is one of a gNB or a next generation eNodeB, ng-eNB, and the target wireless network node is another one of the gNB and the ng-eNB.
- The wireless communication method of claim 31 or 32, wherein the first QoE configuration comprises at least one of:a service type,a measurement configuration for application layer of the source wireless network node,a QoE metric,reporting server information,a reporting interval,a QoE measurement collection identifier for a session, orQoE area scope information.
- The wireless communication method of any of claims 31 to 33, wherein the second QoE configuration comprises at least one of:a measurement configuration for application layer of the target wireless network node,an indication of whether to support QoE measurements of an existing service,an indication of a measurement configuration application layer identifier for performing the QoE measurements of the existing service, oran indication associated with instructing the wireless terminal to report according to a format of the target wireless network node after the handover is completed, ora QoE measurement collection identifier for a session.
- A wireless terminal comprising a processor configured to:receive, from a wireless network node, a quality of experience, QoE, measurement configuration for a non-connected state,wherein the non-connected state comprises an idle state and/or an inactive state.
- The wireless terminal according to claim 35, wherein the processor is further configured to perform the method according to any one of claims 2 to 12.
- A wireless network node comprising a processor configured to:transmit, to a wireless terminal, a quality of experience, QoE, measurement configuration for a non-connected state,wherein the non-connected state comprises an idle state and/or an inactive state.
- The wireless network node according to claim 37, wherein the processor is further configured to perform the method according to any one of claims 14 to 18.
- A wireless terminal comprising a processor configured to:receive, from a first wireless network node or a second wireless network node, a quality of experience, QoE, measurement configuration for a dual-connectivity mode,wherein the first wireless network node is one of a master node and a secondary node and the second wireless network node is another one of the master node and the secondary node.
- The wireless terminal according to claim 39, wherein the processor is further configured to perform the method according to any one of claims 20 to 25.
- A first wireless network node comprising a processor configured to:receive, from a wireless terminal, quality of experience, QoE, measurement information associated with a dual-connectivity mode,wherein the first wireless network node is one of a master node and a secondary node connected to the wireless terminal.
- The first wireless network node according to claim 41, wherein the processor is further configured to perform the method according to any one of claims 27 to 30.
- A source wireless network node comprising a processor configured to:transmit, to an access and mobility management function, a handover required message comprising a first quality of experience, QoE, configuration of the source wireless network node,receive, from the access and mobility management function, a signaling comprising a second QoE configuration of a target wireless network node, wherein the first QoE configuration is different from the second QoE configuration,receive, from the access and mobility management function, a handover command of handing over the wireless terminal to the target wireless network node, andtransmit, to the wireless network node, the handover command or a dedicated signaling comprising the second QoE configuration.
- The source wireless network node according to claim 43, wherein the processor is further configured to perform the method according to any one of claims 32 to 34.
- A computer program product comprising a computer-readable program medium code stored thereupon, the code, when executed by a processor, causing the processor to implement a wireless communication method recited in any one of claims 1 to 34.
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