WO2018223977A1 - 一种可重同步触发方法及基站 - Google Patents
一种可重同步触发方法及基站 Download PDFInfo
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- WO2018223977A1 WO2018223977A1 PCT/CN2018/090035 CN2018090035W WO2018223977A1 WO 2018223977 A1 WO2018223977 A1 WO 2018223977A1 CN 2018090035 W CN2018090035 W CN 2018090035W WO 2018223977 A1 WO2018223977 A1 WO 2018223977A1
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- resynchronization
- feedback signal
- base station
- received
- time range
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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
- H04W56/001—Synchronization between nodes
- H04W56/0015—Synchronization between nodes one node acting as a reference for the others
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/0001—Arrangements for dividing the transmission path
- H04L5/0003—Two-dimensional division
- H04L5/0005—Time-frequency
- H04L5/0007—Time-frequency the frequencies being orthogonal, e.g. OFDM(A) or DMT
- H04L5/001—Time-frequency the frequencies being orthogonal, e.g. OFDM(A) or DMT the frequencies being arranged in component carriers
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/003—Arrangements for allocating sub-channels of the transmission path
- H04L5/0053—Allocation of signalling, i.e. of overhead other than pilot signals
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/0091—Signalling for the administration of the divided path, e.g. signalling of configuration information
- H04L5/0096—Indication of changes in allocation
- H04L5/0098—Signalling of the activation or deactivation of component carriers, subcarriers or frequency bands
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W56/00—Synchronisation arrangements
- H04W56/0005—Synchronisation arrangements synchronizing of arrival of multiple uplinks
-
- 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
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access
Definitions
- the present application relates to the field of communications, and in particular, to a resynchronization triggering method and a base station.
- CA Carrier Aggregation
- the base station when the MTA is enabled, the base station needs to delay 30 milliseconds after the uplink secondary carrier cell (SCC) is activated, and then triggers resynchronization.
- SCC uplink secondary carrier cell
- the base station triggers resynchronization for too long, which will cause the uplink throughput to be damaged.
- the present application provides a resynchronization triggering method and a base station, and aims to solve the problem of impaired uplink throughput caused by the existing resynchronization triggering method.
- the first aspect of the present application provides a resynchronization triggering method, including: the base station triggers resynchronization immediately after the uplink secondary carrier cell SCC is activated, and the triggering time of the resynchronization is T1.
- the base station detects whether a resynchronization feedback signal is received within a preset time range, and if not, triggers resynchronization, the starting time of the preset time range is the T1, and the termination time is T2, T2 and The difference of T1 is less than or equal to 30 milliseconds. Since the base station triggers resynchronization immediately after the uplink secondary carrier cell SCC is activated, the lag time for triggering resynchronization can be shortened, thereby improving the uplink throughput. Moreover, if the resynchronization feedback signal is not received within the preset time range, the base station triggers resynchronization again. Therefore, compatibility with different terminals can be achieved, and the terminal can correctly demodulate the physical downlink control channel command.
- a second aspect of the present application provides a base station, including: a processor, configured to trigger resynchronization immediately after an uplink secondary carrier cell SCC is activated, and detect whether a resynchronization feedback signal is received within a preset time range. If no, the resynchronization is triggered, the triggering time of the resynchronization is T1, the starting time of the preset time range is the T1, the ending time is T2, and the difference between T2 and T1 is less than or equal to 30 milliseconds. .
- the base station can increase the uplink throughput of the CA.
- a third aspect of the present application provides a base station, including: a resynchronization module and a detection module.
- the resynchronization module is configured to trigger resynchronization immediately after the uplink secondary carrier cell SCC is activated, and the triggering time of the resynchronization is T1.
- the detection module is configured to detect whether a resynchronized feedback signal is received within a preset time range.
- the resynchronization module is further configured to: if the detection module does not receive the feedback signal of the resynchronization within a preset time range, trigger resynchronization, where the starting time of the preset time range is the T1, the termination time For T2, the difference between T2 and T1 is less than or equal to 30 milliseconds.
- the base station can increase the uplink throughput of the CA.
- the base station detects whether a resynchronization feedback signal is received within a preset time range, and if not, triggering resynchronization includes: the base station detecting the preset time range by using a preset period Whether the feedback signal of the resynchronization is received, and if not, the resynchronization is triggered until the current time t1 does not belong to the preset time range.
- the base station detects whether a resynchronization feedback signal is received within a preset time range, and if not, triggering resynchronization includes: detecting, by the base station, at time t2 within the preset time range Whether the feedback signal of the resynchronization is received, and if not, the resynchronization request is initiated again, t2 ⁇ T2.
- the base station detects whether a resynchronization feedback signal is received at time T2, and if not, initiates a resynchronization request last time.
- the mechanism of resynchronization is transmitted three times, which can save resources while improving the uplink throughput.
- a fourth aspect of the present application provides a computer readable storage medium storing instructions that, when executed on a computer, cause the computer to perform the resynchronization triggering method described above.
- a fifth aspect of the present application provides a computer program product comprising instructions which, when executed on a computer, cause the computer to perform the resynchronization triggering method described above.
- a sixth aspect of the present application provides a chip system including a processor for performing the resynchronization triggering method described above.
- FIG. 1 is a flowchart of a resynchronization triggering method according to an embodiment of the present application
- FIG. 2 is a flowchart of still another method for resynchronization triggering according to an embodiment of the present application
- FIG. 3 is a schematic structural diagram of a base station according to an embodiment of the present disclosure.
- FIG. 4 is a schematic structural diagram of still another base station according to an embodiment of the present application.
- the resynchronization triggering method disclosed in the embodiment of the present application is applied to the scenario in which the MTA is enabled.
- the scenario in which the MTA is enabled may be a non-same coverage of the CA (the two cells cover different regions), or may be the same coverage of the CA. (Two cells cover the same area) scenario.
- the CA may be an uplink two carrier, or may be an uplink N (N is an integer greater than 2) carrier.
- the base station delays the re-synchronization after 30 ms delay: the demodulation performance of different terminals is different.
- the antenna cannot work immediately.
- the existing protocol specifies that the antenna is activated. The lag time is 34 milliseconds, corresponding to the base station.
- the existing protocol stipulates that after the uplink SCC is activated, the hysteresis is triggered by a delay of 30 milliseconds.
- the probability of order can reach 80%.
- the present application proposes a resynchronization triggering method, which aims to reduce the delay time of triggering resynchronization without reducing the demodulation performance of the terminal, thereby improving the throughput of the uplink CA.
- FIG. 1 is a resynchronization triggering method according to an embodiment of the present application, including the following steps:
- the base station triggers resynchronization immediately after the uplink SCC is activated.
- S102 The base station detects whether a resynchronization feedback signal is received within a preset time range, and if not, triggers resynchronization. If yes, perform the subsequent steps specified in the existing agreement, and will not go into details here.
- the starting time of the preset time range is the time T1 at which S101 triggers resynchronization
- the ending time is T2
- the difference T2-T1 between T2 and T1 may be 30 milliseconds, or less than 30 milliseconds.
- the resynchronized feedback signal is a preamble Preamble signal transmitted by the terminal.
- the base station may perform S102 in a preset period until the current time t1 does not belong to the preset time range.
- the base station may also trigger resynchronization according to the process shown in FIG. 2.
- S202 and S203 are a specific implementation manner of S102:
- the base station initiates a resynchronization request immediately after the uplink SCC is activated.
- S202 The base station detects whether a resynchronization feedback signal is received at a certain time t2 (t2 ⁇ T2) within a preset time range, and if not, initiates a resynchronization request again.
- S203 The base station detects whether a feedback signal of resynchronization is received at time T2, and if not, initiates a resynchronization request for the last time.
- the resynchronization triggering method disclosed in the embodiment of the present application improves the timing at which the base station initiates resynchronization for the first time, that is, immediately after the uplink SCC is activated, the resynchronization request is initiated.
- This mechanism can ensure that most terminals can correctly demodulate the PDCCH order.
- the base station will trigger re-synchronization again before the maximum lag time is reached, so as to ensure that the terminal does not start the first time because the base station initiates heavy
- the timing of the synchronization changes to affect the performance of the terminal.
- the base station may also skip S203, that is, only detect at time T2, and if a feedback signal of resynchronization is not received, initiate a resynchronization request.
- FIG. 3 is a base station according to an embodiment of the present disclosure, including: a processor, optionally, further including a memory.
- the processor is configured to trigger resynchronization immediately after the uplink secondary carrier cell SCC is activated, and the triggering time of the resynchronization is T1; and detecting whether a resynchronization feedback signal is received within a preset time range, and if not, triggering Synchronization, the starting time of the preset time range is the T1, the ending time is T2, and the difference between T2 and T1 is less than or equal to 30 milliseconds.
- the memory is used to store applications for implementing the functions of the processor and data generated during the running of the application.
- the base station shown in FIG. 3 initiates a resynchronization request immediately after the uplink SCC is activated. If the feedback of the resynchronization is not received, the resynchronization request is retransmitted after a maximum delay of 30 milliseconds. Therefore, the throughput of the uplink CA can be improved while ensuring correct demodulation of the terminal.
- FIG. 4 is a base station according to an embodiment of the present disclosure, including: a resynchronization module and a detection module.
- the resynchronization module is configured to trigger resynchronization immediately after the uplink secondary carrier cell SCC is activated, and the triggering time of the resynchronization is T1.
- the detection module is configured to detect whether a resynchronized feedback signal is received within a preset time range.
- the resynchronization module is further configured to: if the detection module does not receive the feedback signal of the resynchronization within a preset time range, trigger resynchronization, where the starting time of the preset time range is the T1, the termination time For T2, the difference between T2 and T1 is less than or equal to 30 milliseconds.
- the detecting module may periodically detect whether a resynchronized feedback signal is received within a preset time range.
- the detecting module detects whether a resynchronized feedback signal is received at time t2 within the preset time range, and if not, at time T2, it is detected whether a resynchronized feedback signal is received, t2 ⁇ T2.
- the resynchronization module initiates a resynchronization request again. If the detection module does not receive the feedback signal of the resynchronization at time T2, the resynchronization module initiates the last time. Synchronize the request.
- the base station shown in FIG. 4 improves the throughput of the uplink CA on the premise of ensuring correct demodulation of the terminal. Further, the three-time resynchronization request mechanism is adopted to save resources in the case of improving throughput.
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Abstract
Description
Claims (12)
- 一种重同步触发方法,其特征在于,包括:基站在上行辅载波小区SCC激活后,立即触发重同步,所述重同步的触发时刻为T1;所述基站检测在预设的时间范围内是否接收到重同步的反馈信号,如果否,触发重同步,所述预设的时间范围的起始时刻为所述T1,终止时刻为T2,T2与T1的差值小于或等于30毫秒。
- 根据权利要求1所述的方法,其特征在于,所述基站检测在预设的时间范围内是否接收到重同步的反馈信号,如果否,触发重同步包括:所述基站以预设的周期、检测在预设的时间范围内是否接收到重同步的反馈信号,如果否,触发重同步,直到当前时刻t1不属于所述预设的时间范围内。
- 根据权利要求1所述的方法,其特征在于,所述基站检测在预设的时间范围内是否接收到重同步的反馈信号,如果否,触发重同步包括:所述基站在所述预设的时间范围内的时刻t2检测是否接收到重同步的反馈信号,如果否,再次发起重同步请求,t2<T2;所述基站在时刻T2,检测是否接收到重同步的反馈信号,如果否,最后一次发起重同步请求。
- 一种基站,其特征在于,包括:处理器,用于在上行辅载波小区SCC激活后,立即触发重同步,所述重同步的触发时刻为T1;并检测在预设的时间范围内是否接收到重同步的反馈信号,如果否,触发重同步,所述预设的时间范围的起始时刻为所述T1,终止时刻为T2,T2与T1的差值小于或等于30毫秒。
- 根据权利要求4所述的基站,其特征在于,所述处理器用于检测在预设的时间范围内是否接收到重同步的反馈信号,如果否,触发重同步包括:所述处理器具体用于,以预设的周期、检测在预设的时间范围内是否接收到重同步的反馈信号,如果否,触发重同步,直到当前时刻t1不属于所述预设的时间范围内。
- 根据权利要求4所述的基站,其特征在于,所述处理器用于检测在预设的时间范围内是否接收到重同步的反馈信号,如果否,触发重同步包括:所述处理器具体用于,在所述预设的时间范围内的时刻t2检测是否接收到重同步的反馈信号,如果否,再次发起重同步请求,t2<T2;并在时刻T2,检测是否接收到重同步的反馈信号,如果否,最后一次发起重同步请求。
- 一种基站,其特征在于,包括:重同步模块,用于在上行辅载波小区SCC激活后,立即触发重同步,所述重同步的触发时刻为T1;检测模块,用于检测在预设的时间范围内是否接收到重同步的反馈信号;所述重同步模块还用于,如果检测模块在预设的时间范围内没有接收到重同步的反馈信号,触发重同步,所述预设的时间范围的起始时刻为所述T1,终止时刻为T2, T2与T1的差值小于或等于30毫秒。
- 根据权利要求7所述的基站,其特征在于,所述检测模块用于检测在预设的时间范围内是否接收到重同步的反馈信号包括:所述检测模块具体用于,以预设的周期、检测在预设的时间范围内是否接收到重同步的反馈信号。
- 根据权利要求7所述的基站,其特征在于,所述检测模块用于检测在预设的时间范围内是否接收到重同步的反馈信号,所述重同步模块用于如果检测模块在预设的时间范围内没有接收到重同步的反馈信号,触发重同步包括:所述检测模块具体用于,在所述预设的时间范围内的时刻t2检测是否接收到重同步的反馈信号,如果否,在时刻T2,检测是否接收到重同步的反馈信号,t2<T2;所述重同步模块具体用于,如果所述检测模块在时刻t2没有接收到重同步的反馈信号,再次发起重同步请求,如果所述检测模块在时刻T2没有接收到重同步的反馈信号,最后一次发起重同步请求。
- 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质存储有指令,所述指令在计算机上运行时,使得所述计算机执行权利要求1至3任一项所述的重同步触发方法。
- 一种包含指令的计算机程序产品,其特征在于,当所述计算机程序产品在计算机上运行时,使得所述计算机执行权利要求1至3任一项所述的重同步触发方法。
- 一种芯片系统,其特征在于,包括处理器,用于执行权利要求1至3任一项所述的重同步触发方法。
Priority Applications (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP18812864.9A EP3624381B1 (en) | 2017-06-08 | 2018-06-06 | Resynchronization triggering method and base station |
| JP2019567585A JP6980038B2 (ja) | 2017-06-08 | 2018-06-06 | 再同期トリガ方法および基地局 |
| US16/706,375 US11246109B2 (en) | 2017-06-08 | 2019-12-06 | Resynchronization trigger method and base station |
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| CN201710427444.7 | 2017-06-08 | ||
| CN201710427444.7A CN107196750B (zh) | 2017-06-08 | 2017-06-08 | 一种可重同步触发方法及基站 |
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| US16/706,375 Continuation US11246109B2 (en) | 2017-06-08 | 2019-12-06 | Resynchronization trigger method and base station |
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| WO2018223977A1 true WO2018223977A1 (zh) | 2018-12-13 |
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| CN107196750B (zh) | 2017-06-08 | 2020-03-20 | 上海华为技术有限公司 | 一种可重同步触发方法及基站 |
| WO2019071589A1 (zh) * | 2017-10-13 | 2019-04-18 | 华为技术有限公司 | 一种传输方法、终端设备和网络设备 |
| WO2020000434A1 (zh) * | 2018-06-29 | 2020-01-02 | 华为技术有限公司 | 通信方法及装置 |
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- 2018-06-06 EP EP18812864.9A patent/EP3624381B1/en active Active
- 2018-06-06 JP JP2019567585A patent/JP6980038B2/ja active Active
- 2018-06-06 WO PCT/CN2018/090035 patent/WO2018223977A1/zh not_active Ceased
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- 2019-12-06 US US16/706,375 patent/US11246109B2/en active Active
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| CN107196750A (zh) * | 2017-06-08 | 2017-09-22 | 上海华为技术有限公司 | 一种可重同步触发方法及基站 |
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| Publication number | Publication date |
|---|---|
| JP6980038B2 (ja) | 2021-12-15 |
| US11246109B2 (en) | 2022-02-08 |
| EP3624381A4 (en) | 2020-05-27 |
| CN107196750B (zh) | 2020-03-20 |
| EP3624381A1 (en) | 2020-03-18 |
| JP2020522958A (ja) | 2020-07-30 |
| US20200145948A1 (en) | 2020-05-07 |
| CN107196750A (zh) | 2017-09-22 |
| EP3624381B1 (en) | 2025-10-22 |
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