WO2016198005A1 - 非授权载波测量报告的处理方法及装置 - Google Patents

非授权载波测量报告的处理方法及装置 Download PDF

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Publication number
WO2016198005A1
WO2016198005A1 PCT/CN2016/086608 CN2016086608W WO2016198005A1 WO 2016198005 A1 WO2016198005 A1 WO 2016198005A1 CN 2016086608 W CN2016086608 W CN 2016086608W WO 2016198005 A1 WO2016198005 A1 WO 2016198005A1
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Prior art keywords
measurement
reporting
terminal
measurement report
time
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PCT/CN2016/086608
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English (en)
French (fr)
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杨立
陈中明
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中兴通讯股份有限公司
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Publication of WO2016198005A1 publication Critical patent/WO2016198005A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports

Definitions

  • the present application relates to, but is not limited to, the field of communications, and in particular, to a method and apparatus for processing an unlicensed carrier measurement report.
  • cell reselection and handover are important functions.
  • the terminal also referred to as User Equipment, User Equipment for short
  • the terminal needs to measure the signal quality of different cells in order to select a suitable cell for camping.
  • the UE After a UE establishes a connection with a network, the UE still needs to measure the signal quality of its neighboring cell in order to select a suitable cell for handover to meet the mobility requirement.
  • FIG. 1 is a flow chart of a measurement process in an EUTRAN system of an evolved UMTS terrestrial radio access network in the related art.
  • the measurement process in the connected state is: an evolved UMTS terrestrial radio access network on the network side.
  • EUTRAN evolved UMTS Terrestrial Radio Access Network
  • EUTRAN UMTS is a Universal Mobile Telecommunications System
  • EUTRAN Extended UMTS Terrestrial Radio Access Network
  • the measurement control message includes a measurement identifier, a measurement object, a report configuration, and Other relevant properties of the measurement.
  • the UE performs the measurement according to the measurement object and the report configuration in the measurement control message.
  • the measurement process is: the physical layer performs the actual measurement, and the measurement result is reported to the layer 3, and after the layer 3 is processed, it is determined whether the measurement is triggered according to the processed measurement result. Report, if triggered, generate a measurement report and report it to the network side.
  • the measurement identifier is used as an index of the entire measurement configuration, and includes two sub-identities, a measurement object sub-identity and a report configuration sub-identity, and each sub-identity further includes respective related attributes, wherein the measurement object sub-ID includes the measurement object attribute, for example, Carrier frequency, neighbor list, etc.; report configuration sub-identifier contains report configuration attributes, such as event-triggered reporting or periodic reporting, trigger events are defined by trigger conditions (trigger conditions A1, A2, etc.), trigger-related thresholds, offsets Etc., Time To Trigger (TTT), number of times of reporting, etc.
  • trigger conditions Trigger conditions A1, A2, etc.
  • TTT Time To Trigger
  • the measurement object For event-triggered measurement tasks, when the measurement object satisfies the access conditions of the event (for example, neighbors When the duration of the signal quality is better than or equal to the threshold, it is considered to be the measurement object that satisfies the event trigger condition.
  • the measurement report is reported to the network side, and the measurement object in the report is sorted according to the measurement set by the network, and the optimal one is in front.
  • TTT triggering time length
  • the TTT After judging the access conditions of the event, the TTT is started, and the TTT is terminated by T8. During this period, all physical layer measurement results received by the terminal are processed to meet the access conditions of the event after the third processing, and the terminal triggers the reporting of the measurement report. . If during this period, the underlying measurement result received at any one time does not satisfy the admission condition of the event after the third processing, the TTT stops and waits for the next T3 time to restart.
  • CA Carrier Aggregation
  • Pcell Primary Cell
  • Scell Secondary Cell
  • Dual Connectivity Dual Connectivity
  • a dual-connected terminal can remain connected to more than two network nodes at the same time, but the control plane connection is only connected to one of the cells, such as a macro cell.
  • the multiple service nodes of the terminal are multiple base stations, and the delay between the base stations is not negligible.
  • MeNB macro base station
  • SeNB small cell base station
  • Unlicensed carrier refers to the spectrum (or carrier) that can be used directly without authorization, subject to the relevant regulations (radio control) of government agencies (eg, National Radio Regulatory Commission). For example, microwave ovens, remote control toy airplanes, wireless mice, wireless keyboards, and Wireless Fidelity (WiFi) use unlicensed carriers. In some cases, the unlicensed carrier needs to pass the competition, such as the Listen Before Talk (LBT) mechanism.
  • LBT Listen Before Talk
  • the unlicensed carrier cannot be used.
  • the unlicensed carrier and the authorized carrier may be used in a carrier aggregation manner or in a dual connectivity manner.
  • the unlicensed carrier is generally used as a supplement to the data transmission, that is, the authorized carrier is used as the primary serving cell, and the unlicensed carrier is used as the secondary serving cell.
  • the unlicensed carrier resource has a great speciality.
  • the measurement process is still performed according to the measurement process of the LTE system, but for the triggering of the measurement report, the pilot on the unlicensed carrier is in the unlicensed carrier environment.
  • the resources need to be obtained through competition, including the signals sent by the eNB for radio resource management (Radio Resource Management, RRM for short). If the resource fails, the signal used for measurement cannot be sent, and the terminal cannot measure the non. The signal strength and/or quality of the authorized carrier.
  • RRM Radio Resource Management
  • the triggering of the measurement report is still performed according to the existing mechanism of the LTE system, it may cause false triggering of the measurement report, or the measurement report may not be triggered, resulting in the base station not being reliable and accurate.
  • the RRM measurement report performs reasonable mobility processing decisions, and in serious cases, dropped calls are generated.
  • the present invention provides a method and a device for processing an unlicensed carrier measurement report, so as to at least solve the triggering of the measurement report according to the existing mechanism of the LTE system in the related art, which may cause a false trigger of the measurement report for the unlicensed carrier. Or measure the problem that is not triggered by the report.
  • a method for processing an unlicensed carrier measurement report including: after receiving, by the network, a message carrying the measurement control information, the terminal The measurement is performed by the unlicensed carrier, where the measurement control information is used to indicate that the terminal performs measurement on a plurality of unlicensed target cells on the designated unlicensed carrier; and the terminal receives the RRM time evaluation that satisfies the radio resource management.
  • the evaluation time window is started, and time values of the plurality of measurement results satisfying the admission condition are sequentially acquired in the evaluation time window until the measurement result does not satisfy the admission condition or the End time of the evaluation time window; the terminal obtains an output result by using the time value of the plurality of measurement results as an input parameter of the preset rule, and determining, according to the output result, whether to trigger reporting of the measurement including the mobile measurement event Reported actions.
  • the manner in which the terminal obtains the output result by using the time value of the multiple measurement results as an input parameter of the preset rule includes at least one of the following: the terminal calculates a phase value of the plurality of measurement results And a plurality of first time difference values between the two time values; and calculating an average value of the plurality of first time difference values; the terminal calculating two adjacent time times of the plurality of measurement results a plurality of second time difference values between the values, and calculating a variance value of the plurality of second time difference values; the terminal calculating between the two time values of the time values of the plurality of measurement results a plurality of third time difference values, and determining a number of low-latency samples of the plurality of third time difference values that are less than or equal to a preset threshold; the terminal calculating adjacent ones of the plurality of measurement results a plurality of third time difference values between the two time values, and determining whether the third time difference value is less than or equal to the preset threshold.
  • the determining, by the terminal, whether to trigger the reporting of the measurement report that includes the mobile measurement event according to the output result includes: determining, by the terminal, whether the average value is less than or equal to a first threshold value; The terminal triggers an operation of reporting the measurement report; when the determination result is no, the terminal prohibits triggering the operation of reporting the measurement report or stopping the evaluation time window; or, if the determination result is no, When the network side still indicates that the terminal triggers the operation of reporting the measurement report, the terminal reports the indication information for indicating that the mobile measurement event is an unreliable measurement event, while reporting the measurement report.
  • the determining, by the terminal, whether to trigger the reporting of the measurement report that includes the mobile measurement event, according to the output includes: determining, by the terminal, whether the variance value is less than or equal to a second threshold; When the terminal is triggered, the terminal triggers an operation of reporting the measurement report; when the determination result is negative, the terminal prohibits triggering the operation of reporting the measurement report or stopping the evaluation. If the result of the determination is no, and the network side still indicates that the terminal triggers the operation of reporting the measurement report, the terminal reports the measurement report and reports the mobile measurement.
  • An event is an indication of an unreliable measurement event.
  • the determining, by the terminal, whether to trigger the reporting of the measurement report that includes the mobile measurement event, according to the output includes: determining, by the terminal, whether the number of the low-latency samples is greater than a third threshold; If yes, the terminal triggers an operation of reporting the measurement report; when the determination result is no, the terminal prohibits triggering an operation of reporting the measurement report or stopping the evaluation time window; or, if the determination result is no, When the network side still indicates that the terminal triggers the operation of reporting the measurement report, the terminal reports the measurement report and reports the indication information for indicating the mobile measurement event unreliable measurement event.
  • the determining, by the terminal, whether to trigger the reporting of the measurement report that includes the mobile measurement event, according to the output includes: when the third time difference is less than or equal to the preset threshold, the terminal triggers An operation of reporting the measurement report; when the third time difference is not less than or equal to the preset threshold, the terminal prohibits triggering an operation of reporting the measurement report or stopping the evaluation time window; or When the third time difference value is not less than or equal to the preset threshold, and the network side still indicates that the terminal triggers the operation of reporting the measurement report, the terminal reports the measurement report at the same time. An indication information indicating that the mobile measurement event is unreliable to measure an event.
  • the evaluation time window is a length of time that the network side is pre-configured for the terminal, or a triggering time length TTT in the radio resource management RRM measurement configuration.
  • a processing apparatus for an unlicensed carrier measurement report which is applied to a terminal side, and includes: a measurement module, configured to: after receiving a message that the network side carries the measurement control information And performing measurement on the unlicensed carrier, where the measurement control information is used to indicate that the terminal performs measurement on a plurality of unlicensed target cells on the designated unlicensed carrier; and the acquiring module is configured to: satisfy the radio resource from receiving When the measurement result of the access condition of the RRM time evaluation is managed, the evaluation time window is started, and time values of the plurality of measurement results satisfying the admission condition are sequentially acquired in the evaluation time window until the measurement result does not satisfy the The accessing condition or the time of the evaluation time window ends; the processing module is configured to: obtain the output result by using the time value of the plurality of measurement results as an input parameter of the preset rule, and according to the output result, Whether to trigger the operation of reporting the measurement report containing the mobile measurement event.
  • the processing module includes at least one of the following: a first calculating unit, configured to: calculate, by the terminal, a plurality of first times between two adjacent time values of the time values of the multiple measurement results a difference, and calculating an average value of the plurality of first time difference values; the second calculating unit is configured to: calculate a plurality of seconds between adjacent two time values of the time values of the plurality of measurement results a time difference value, and calculating a variance value of the plurality of second time difference values; the third calculation unit is configured to: calculate a plurality of time values between adjacent two time values of the plurality of measurement results a third time difference value, and determining a number of low-delay samples of the plurality of third time difference values that are less than or equal to a preset threshold; and a fourth calculating unit, configured to: calculate a time value of the plurality of measurement results And a plurality of third time difference values between two adjacent time values, and determining whether the third time difference value is less than or equal to the preset threshold.
  • the processing module further includes: a first determining unit, configured to: determine whether the average value is less than or equal to the first threshold; the first triggering unit is configured to: the first determining unit determines that the result is If yes, triggering the operation of reporting the measurement report; the first prohibiting unit is configured to: when the first determination unit determines that the result is negative, prohibiting the operation of reporting the measurement report or stopping the evaluation time window; or The first reporting unit is configured to: when the first determining unit determines that the result is no, and the network side still indicates that the terminal triggers the operation of reporting the measurement report, reporting the measurement report and reporting the The mobile measurement event is an indication of an unreliable measurement event.
  • a first determining unit configured to: determine whether the average value is less than or equal to the first threshold
  • the first triggering unit is configured to: the first determining unit determines that the result is If yes, triggering the operation of reporting the measurement report
  • the first prohibiting unit is configured to: when the first determination unit determines that the result is negative, prohibiting the operation of
  • the processing module further includes: a second determining unit, configured to: determine whether the variance value is less than or equal to a second threshold; and the second trigger unit is configured to: determine a result in the second determining unit If yes, the operation of reporting the measurement report is triggered; the second prohibiting unit is configured to: when the second determination unit determines that the result is no, triggering the operation of reporting the measurement report or stopping the evaluation time window; or The second reporting unit is configured to: when the second determining unit determines that the result is no, and the network side still indicates that the terminal triggers the operation of reporting the measurement report, reporting the measurement report and reporting the indication
  • the mobile measurement event is an indication of an unreliable measurement event.
  • the processing module further includes: a third determining unit, configured to: determine whether the low-latency sampling quantity is greater than a third threshold; and the third triggering unit is configured to: in the third determining unit When the determination result is YES, the operation of reporting the measurement report is triggered; and the third prohibiting unit is configured to: when the third determination unit determines that the result is negative, prohibiting the operation of reporting the measurement report or stopping the evaluation time window Or the third reporting unit is configured to: when the third determining unit determines that the result is no, and the network side still indicates that the terminal triggers the operation of reporting the measurement report, reporting the measurement report and reporting the same The indication information indicating that the mobile measurement event is an unreliable measurement event.
  • a third determining unit configured to: determine whether the low-latency sampling quantity is greater than a third threshold
  • the third triggering unit is configured to: in the third determining unit When the determination result is YES, the operation of reporting the measurement report is triggered
  • the third prohibiting unit is configured to: when the third determination unit
  • the processing module includes: a fourth triggering unit, configured to: when the third time difference value is less than or equal to the preset threshold, trigger an operation of reporting the measurement report; And being configured to: when the third time difference value is not less than or equal to the preset threshold, prohibiting an operation of reporting the measurement report or stopping the evaluation time window; or, the fourth reporting unit is set to And when the third time difference value is not less than or equal to the preset threshold, and the network side still indicates that the terminal triggers the operation of reporting the measurement report, reporting the measurement report and reporting the report for reporting
  • the mobile measurement event is an indication of an unreliable measurement event.
  • the evaluation time window is a length of time that the network side is pre-configured for the terminal, or a triggering time length TTT in the radio resource management RRM measurement configuration.
  • a computer readable storage medium storing computer executable instructions that are implemented by a processor implements the above method.
  • the time value of the plurality of measurement results is used as the input parameter of the preset rule, and the output result is obtained, and the time value that requires all the measurement results after the processing is satisfied after the processing is satisfied is triggered. That is, it does not correspond to the method in the related art that determines whether the acquired multiple measurement results satisfy the admission condition, and if the conditions are met, the operation of reporting the measurement report containing the mobile measurement event can be triggered, and then The triggering of the measurement report according to the existing mechanism of the LTE system in the related art is solved, which may cause a false trigger of the measurement report or an untriggered problem of the measurement report for the unlicensed carrier, thereby achieving the effect of improving the user experience. .
  • FIG. 1 is a flow chart of a measurement process in an EUTRAN system of an evolved UMTS terrestrial radio access network in the related art
  • FIG. 2 is a schematic diagram of a triggering time length TTT in the related art
  • FIG. 3 is a flowchart of a method of processing an unlicensed carrier measurement report according to an embodiment of the present invention
  • FIG. 4 is a structural block diagram of a processing apparatus for an unlicensed carrier measurement report according to an embodiment of the present invention.
  • FIG. 5 is a block diagram 1 of an optional structure of a processing device for an unlicensed carrier measurement report according to an embodiment of the present invention
  • FIG. 6 is a block diagram 2 of an optional structure of a processing device for an unlicensed carrier measurement report according to an embodiment of the present invention
  • FIG. 7 is a block diagram 3 of an optional structure of a processing device for an unlicensed carrier measurement report according to an embodiment of the present invention.
  • FIG. 8 is a block diagram 4 of an optional structure of a processing device for an unlicensed carrier measurement report according to an embodiment of the present invention
  • FIG. 9 is a block diagram 5 of an optional structure of a processing device for an unlicensed carrier measurement report according to an embodiment of the present invention.
  • FIG. 10 is a schematic diagram of a method for triggering an unlicensed carrier measurement report according to an alternative embodiment of the present invention.
  • FIG. 11 is a schematic diagram of a method for triggering an unlicensed carrier measurement report according to an alternative embodiment 2 of the present invention.
  • FIG. 12 is a schematic diagram of a method for triggering an unlicensed carrier measurement report according to an alternative embodiment 3 of the present invention.
  • FIG. 13 is a schematic diagram of a method for triggering an unlicensed carrier measurement report according to an alternative embodiment 4 of the present invention.
  • FIG. 3 is a flowchart of a method for processing an unlicensed carrier measurement report according to an embodiment of the present invention. As shown in FIG. 3, the process includes the following steps. :
  • Step S302 After receiving the message carrying the measurement control information, the terminal performs measurement on the unlicensed carrier, where the measurement control information is used to indicate that the terminal performs the multiple unlicensed target cells on the designated unlicensed carrier. measuring;
  • Step S304 The terminal starts to start the evaluation time window when receiving the measurement result that meets the admission condition of the radio resource management RRM time evaluation, and sequentially acquires the time values of the plurality of measurement results that meet the admission condition in the evaluation time window until The measurement result does not satisfy the admission condition or the end of the time window for evaluating the time window;
  • Step S306 The terminal obtains the output result by using the time value of the multiple measurement results as the input parameter of the preset rule, and determines whether to trigger the operation of reporting the measurement report containing the mobile measurement event according to the output result.
  • the time values of the plurality of measurement results are used as the input parameters of the preset rule, and the output result is obtained, and the time value that requires all the measurement results is not unified. If the conditions are met, the reporting operation is triggered, that is, it is not equivalent to determining whether the acquired multiple measurement results satisfy the admission condition in the related art, and if the conditions are met, the report containing the mobile measurement event can be triggered to be reported.
  • the manner of measuring the operation of the report further solves the triggering of the measurement report according to the existing mechanism of the LTE system in the related art, which may cause a false trigger of the measurement report or an untriggered problem of the measurement report for the unlicensed carrier. In turn, the effect of improving the user experience is achieved.
  • the terminal involved in the step S306 in the embodiment takes the time value of the plurality of measurement results as the input parameter of the preset rule, and the output result is obtained in the optional implementation manner of this embodiment.
  • Manner 1 The terminal calculates a plurality of first time difference values between two adjacent time values of the time values of the plurality of measurement results; and calculates an average value of the plurality of first time difference values;
  • Manner 2 The terminal calculates a plurality of second time difference values between two adjacent time values of the time values of the plurality of measurement results, and calculates a variance value of the plurality of second time difference values;
  • Manner 3 The terminal calculates a plurality of third time difference values between two adjacent time values of the time values of the multiple measurement results, and determines a low delay time that is less than or equal to the preset threshold value among the plurality of third time difference values. Number of samples;
  • the low delay sampling number in this embodiment refers to the number of third time difference values less than or equal to the preset threshold.
  • Manner 4 The terminal calculates a plurality of third time difference values between two adjacent time values of the time values of the plurality of measurement results, and determines whether the third time difference value is less than or equal to a preset threshold.
  • different operation manners corresponding to the output result may be used to determine whether to trigger the operation mode of reporting the measurement report.
  • the embodiment is used.
  • the manner in which the terminal involved in the step S306 determines whether to trigger the operation of reporting the measurement report containing the mobile measurement event according to the output result may be implemented as follows:
  • Step S11 The terminal determines whether the average value is less than or equal to the first threshold value
  • Step S12 When the determination result is yes, the terminal triggers an operation of reporting the measurement report
  • Step S13 When the determination result is no, the terminal prohibits the operation of triggering the reporting of the measurement report or stops the evaluation time window; or, when the determination result is no, and the network side still indicates that the terminal triggers the operation of reporting the measurement report, the terminal reports the measurement. At the same time as reporting, the indication information indicating that the mobile measurement event is an unreliable measurement event is reported.
  • the method for triggering the reporting of the measurement report in the step S12 may be triggered by triggering the measurement report according to the existing 3GPP protocol.
  • the method 1 may be: the terminal UE receives n measurement nodes reported to the layer 3 after being filtered by the physical layer 1 during the evaluation time window of the network configuration. If they are R0, R1..Rn-1, respectively, where R0 is the first evaluation value of the third layer to be evaluated, and after layer 3 judgment, the access conditions for RRM event evaluation are met, so the evaluation time window is started. The time is set to T0, R1 is the second received evaluation value of the layer to be layered, the time record is T1, and so on, and the time of receiving the measurement result of Rn-1 is recorded as Tn-1.
  • the time difference between the analysis and evaluation values of two adjacent layers to be three is T1-T0, T2-T1...Tn-1-Tn-2.
  • T1-T0, T2-T1 recorded above.
  • the manner in which the terminal involved in the step S306 in the embodiment determines whether to trigger the operation of reporting the measurement report containing the mobile measurement event according to the output result may be implemented as follows:
  • Step S21 The terminal determines whether the variance value is less than or equal to the second threshold value
  • Step S22 When the determination result is yes, the terminal triggers an operation of reporting the measurement report
  • Step S23 When the determination result is no, the terminal prohibits the operation of triggering the reporting of the measurement report or stops the evaluation time window; or, when the determination result is no, and the network side still indicates that the terminal triggers the operation of reporting the measurement report, the terminal reports the measurement. At the same time as reporting, and reporting the indication information indicating that the mobile measurement event is an unreliable measurement event.
  • the second mode may be: the terminal UE receives n measurement results reported to the layer 3 after being filtered by the physical layer layer 1 in the evaluation time window of the network configuration, respectively, being R0. , R1..Rn-1, where R0 is the first analysis evaluation value of the third layer to be determined. After the third level judgment, the access condition of the RRM event evaluation is satisfied, and then the evaluation time window is started, and the time is set to T0. R1 is the second received evaluation value of the layer 3 to be received. The time record is T1, and so on. The time when the measurement result of Rn-1 is received is recorded as Tn-1. The time difference between the analysis and evaluation values of two adjacent layers to be three is T1-T0, T2-T1...Tn-1-Tn-2.
  • time difference of T1-T0, T2-T1...Tn-1-Tn-2 recorded above is performed as follows Statistical processing: Calculate the variance value, ie: VAR ⁇ (T1-T0), (T2-T1)...(Tn-1-Tn-2) ⁇ . It is then determined whether the calculated variance value exceeds or falls below a certain length threshold TLthresh2 configured by the eNB. If the system-defined condition is met, the triggering measurement report may be reported to the eNB in the form of an RRM mobile measurement event. Otherwise, the reporting of the related event may not be triggered, or the evaluation time window may be stopped.
  • the manner in which the terminal involved in the step S306 in the embodiment determines whether to trigger the operation of reporting the measurement report containing the mobile measurement event according to the output result may be implemented as follows:
  • Step S31 The terminal determines whether the number of low-latency samples is greater than a third threshold
  • Step S32 When the determination result is yes, the terminal triggers an operation of reporting the measurement report
  • Step S33 When the determination result is no, the terminal prohibits the operation of triggering the reporting of the measurement report or stops the evaluation time window; or, when the determination result is no, and the network side still indicates that the terminal triggers the operation of reporting the measurement report, the terminal reports the measurement. At the same time as reporting, and reporting the indication information indicating that the mobile measurement event is an unreliable measurement event.
  • the method 3 may be: the terminal UE receives n measurement results reported to the layer 3 after being filtered by the physical layer layer 1 in the evaluation time window of the network configuration, respectively, being R0. , R1..Rn-1, where R0 is the first analysis evaluation value of the third layer to be determined. After the third level judgment, the access condition of the RRM event evaluation is satisfied, and then the evaluation time window is started, and the time is set to T0. R1 is the second received evaluation value of the layer 3 to be received. The time record is T1, and so on. The time when the measurement result of Rn-1 is received is recorded as Tn-1. The time difference between the analysis and evaluation values of two adjacent layers to be three is T1-T0, T2-T1...Tn-1-Tn-2.
  • the above-mentioned recorded T1-T0, T2-T1...Tn-1-Tn-2 time difference value is subjected to a statistical process of: counting the time difference value, which is lower than or equal to a certain length threshold TLthresh3 configured by the eNB. If the number of low-latency samples exceeds a certain number of thresholds Nthresh configured by the eNB, the triggering measurement report may be reported to the eNB in the form of an RRM mobile measurement event, otherwise the reporting of related events may not be triggered. Or stop evaluating the time window.
  • the terminal involved in step S306 of the embodiment determines whether to trigger the operation of reporting the measurement report containing the mobile measurement event according to the output result.
  • the method may be implemented by: when the third time difference is less than or equal to the preset threshold, the terminal triggers the operation of reporting the measurement report or stops the evaluation time window; or, in the third time, the difference is not less than or
  • the terminal reports the measurement report and reports the indication information indicating that the mobile measurement event is an unreliable measurement event.
  • the evaluation time window involved in this embodiment is the length of time that the network side is pre-configured by the terminal, or the triggering time length TTT in the radio resource management RRM measurement configuration.
  • the method according to the above embodiment can be implemented by means of software plus a necessary general hardware platform, and of course, by hardware, but in many cases, the former is A better implementation.
  • the technical solution of the embodiment of the present invention may be embodied in the form of a software product stored in a storage medium (such as a ROM/RAM, a magnetic disk, an optical disk), and includes a plurality of instructions for making A terminal device (which may be a mobile phone, a computer, a server, or a network device, etc.) performs the method described in the embodiments of the present invention.
  • a processing device for the unlicensed carrier measurement report is provided, and the device is used to implement the foregoing embodiment and the optional implementation manner, and details are not described herein.
  • the term “module” may implement a combination of software and/or hardware of a predetermined function.
  • the devices described in the following embodiments may be implemented in software, hardware, or a combination of software and hardware, is also possible and contemplated.
  • the apparatus includes: a measurement module 42 configured to: receive a network side After transmitting the message carrying the measurement control information, the measurement is performed on the unlicensed carrier, where the measurement control information is used to instruct the terminal to perform measurement on the plurality of unlicensed target cells on the designated unlicensed carrier; the obtaining module 44, and the measurement module 42 coupling connection, which is set to start the evaluation time window when receiving the measurement result satisfying the admission condition of the radio resource management RRM time evaluation, and sequentially acquire the time of the plurality of measurement results satisfying the admission condition in the evaluation time window The value is not until the time when the measurement result does not meet the admission condition or the time window for evaluation; the processing module 46 is coupled to the acquisition module 44, and is configured to: output the result by using the time value of the multiple measurement results as the input parameter of the preset rule. And based on the output result to determine whether
  • FIG. 5 is a block diagram of an optional structure of a processing device for an unlicensed carrier measurement report according to an embodiment of the present invention.
  • the processing module 46 includes at least one of the following: a first calculating unit 52, configured as: a terminal Calculating a plurality of first time difference values between two adjacent time values of the plurality of time values of the plurality of measurement results, and calculating an average value of the plurality of first time difference values;
  • the second calculating unit 54 is configured to: calculate more a plurality of second time difference values between two adjacent time values of the measured time values, and calculating a variance value of the plurality of second time difference values;
  • the third calculating unit 56 is configured to: calculate the plurality of Measure a plurality of third time difference values between adjacent two time values in the time value of the measurement result, and determine a number of low delay samples that are less than or equal to a preset threshold value among the plurality of third time difference values;
  • the fourth calculation unit The setting is: calculating a plurality of third time difference values
  • FIG. 6 is a block diagram of an optional structure of a processing device for an unlicensed carrier measurement report according to an embodiment of the present invention.
  • the processing module 46 further includes: a first determining unit 62 coupled to the first computing unit 52. The connection is set to: determine whether the average value is less than or equal to the first threshold value; the first trigger unit 64 is coupled to the first determining unit 62, and is configured to: when the first determining unit 62 determines that the result is yes, triggering the report The operation of the measurement report; the first prohibiting unit 66 is coupled to the first triggering unit 64, and is configured to: when the first determining unit 62 determines that the result is no, the operation of triggering the reporting of the measurement report or stopping the evaluation of the time window is prohibited; or
  • the first reporting unit 68 is coupled to the first triggering unit 64, and is configured to: when the first determining unit 62 determines that the result is no, and the network side still indicates that the terminal triggers the operation of reporting the measurement report, while reporting the measurement report
  • FIG. 7 is a block diagram 3 of an optional structure of a processing device for an unlicensed carrier measurement report according to an embodiment of the present invention.
  • the processing module 46 further includes: a second determining unit 72 coupled to the second computing unit 54. And being set to: determine whether the variance value is less than or equal to the second threshold value; the second triggering unit 74 is coupled to the second determining unit 72, and is configured to: when the second determining unit 72 determines that the result is yes, triggering reporting The operation of the measurement report; the second prohibiting unit 76 is coupled to the second trigger unit 74, and is configured to: when the second determining unit 72 determines that the result is no, the operation of triggering the reporting of the measurement report or stopping the evaluation time window is prohibited; or
  • the second reporting unit 78 is coupled to the second trigger unit 74, and is configured to: in the second determining unit 72, the result is no, and the network side is still When the terminal is instructed to trigger the operation of reporting the measurement report, the indication information indicating that the mobile measurement event is
  • FIG. 8 is a block diagram of an optional structure of a processing device for an unlicensed carrier measurement report according to an embodiment of the present invention.
  • the processing module 46 further includes: a third determining unit 82 coupled to the third computing unit 56.
  • the first trigger unit 84 is coupled to the determining unit 82, and is configured to: when the third determining unit 82 determines that the result is yes, trigger the reporting report.
  • the third prohibiting unit 86 is coupled to the third triggering unit 84, and is configured to: when the third determining unit 82 determines that the result is negative, prohibiting the triggering of the reporting of the measurement report or stopping the evaluation of the time window; or, the third The reporting unit 88 is coupled to the third trigger unit 84, and is configured to: when the third determining unit 82 determines that the result is no, and the network side still indicates that the terminal triggers the operation of reporting the measurement report, reporting the report and reporting the report An indication indicating that the mobile measurement event is an unreliable measurement event.
  • FIG. 9 is a block diagram of an optional structure of a processing device for an unlicensed carrier measurement report according to an embodiment of the present invention.
  • the processing module 46 further includes: a fourth trigger unit 92, configured to: in a third time difference When the value is less than or equal to the preset threshold, the operation of reporting the measurement report is triggered; the fourth prohibiting unit 94 is coupled to the fourth trigger unit 92, and is configured to: when the third time difference is not less than or equal to the preset threshold The triggering of the reporting of the measurement report or the stopping of the evaluation time window is prohibited; or the fourth reporting unit is configured to: the third time difference is not less than or equal to the preset threshold, and the network side still instructs the terminal to trigger the reporting of the measurement report.
  • the indication information indicating that the mobile measurement event is an unreliable measurement event is reported at the same time as the measurement report is reported.
  • the evaluation time window is a length of time that the network side is pre-configured for the terminal, or a triggering time length TTT in the radio resource management RRM measurement configuration.
  • the above modules may be implemented by software or hardware.
  • the foregoing may be implemented by, but not limited to, the above modules are all located in the same processor; or the modules are respectively located in multiple processors.
  • the optional embodiment provides a method for triggering an unlicensed carrier measurement report, and the implementation process of the method includes:
  • the terminal UE receives n measurement results reported to the layer 3 after being filtered by the physical layer 1 in the evaluation time window of the network configuration, respectively, R0, R1, ..., Rn-1, where R0 is the first to be
  • the analysis and evaluation value of layer 3 is judged by layer 3 and meets the access conditions for RRM event evaluation.
  • the evaluation time window is started.
  • the time is set to T0, and R1 is the second received analysis and evaluation of the layer 3 to be evaluated.
  • the value, the time at this time is recorded as T1, and so on, and the time at which the measurement result of Rn-1 is received is recorded as Tn-1.
  • the time difference between the analysis and evaluation values of two adjacent layers to be three is T1-T0, T2-T1...Tn-1-Tn-2.
  • the evaluation time window may be configured by the eNB to the terminal. If not configured, the TTT length in the current RRM measurement configuration may also be used as the length of the evaluation time window of the current measurement task.
  • the UE performs the following time difference between the T1-T0, T2-T1, and Tn-1-Tn-2 times of the record at the end of the evaluation time window.
  • Kind or multiple statistical processing :
  • (1): Calculate the average value, ie: Mean ⁇ (T1-T0), (T2-T1)...(Tn-1-Tn-2) ⁇ Tn-1-T0/(n-1); Whether the calculated average value exceeds or falls below a certain length threshold TLthresh1 configured by the eNB. If the system-defined condition is met, the triggering measurement report is reported to the eNB in the form of an RRM mobile measurement event. Otherwise, the reporting of the related event cannot be triggered.
  • the triggering measurement report may be reported to the eNB in the form of an RRM mobile measurement event, otherwise the reporting of the related event may not be triggered.
  • the above content can also be reported jointly with the existing RRM mobile measurement event, providing useful reference information supplemented by the eNB.
  • the eNB can learn the true pattern distribution of the pilot signal that can be measured by the UE side through the foregoing information content reported by the UE, so as to further understand the wireless status of the UE side on the unlicensed carrier.
  • the erroneous triggering of the RRM measurement report in the related art or the non-triggering of the measurement report may be solved, causing the base station to make an unreasonable decision according to the inaccurate measurement report, and in serious cases, the problem of dropped calls may be raised.
  • the user's service experience may be used to solve the erroneous triggering of the RRM measurement report in the related art or the non-triggering of the measurement report.
  • the principle of the optional embodiment may not be limited to the LTE system, and is applicable to all communication systems that need to compete to use the unlicensed carrier resources.
  • the embodiment of the present invention can prevent the terminal from reporting the "unreliable" error. Mobile events make the network more reliable and efficient in terms of terminal mobility/radio resource management.
  • the base station involved is an example of two cells, where the working frequency of the cell 1 deployed on the authorized carrier is f1, and the working frequency of the cell 3 deployed on the unlicensed carrier is f3.
  • the RRM measurement and reporting for the cell on the licensed carrier is only evaluated for the RRM measurement of the cell 3 in this embodiment.
  • the network side sends an RRC message containing measurement control information to the UE, where the measurement task includes: searching for the quality of a neighboring cell signal is better than a certain threshold, thereby triggering an event (A4), indicating a relevant trigger threshold.
  • the measurement object is the unlicensed carrier frequency point f3.
  • the base station also notifies the terminal that if the average value of the time difference of the measured effective result is lower than or equal to 50 ms, the measurement report containing A4 can be triggered; in the measurement control information, the base station notifies the terminal, for the unlicensed carrier
  • the evaluation time window length is, for example, 210 ms.
  • FIG. 10 is a schematic diagram of a method for triggering an unlicensed carrier measurement report according to an alternative embodiment of the present invention.
  • the terminal measures the signal quality of the cell 3, and is lower than Thresh-1 after layer 3 processing. , does not meet the trigger condition of A4, does not perform RRM event evaluation access processing.
  • the terminal measures the signal quality of cell 3, which is higher than Thresh-1 after layer 3 processing, and is the first effective measurement result that satisfies the event trigger condition, and then enters the RRM related event evaluation admission process. Since the cell 3 is deployed on an unlicensed carrier, the evaluation time window is started and the time T3 is recorded.
  • the terminal again measures the signal quality of the cell 3, which is higher than Thresh-1 after the layer 3 processing, so the time T4 is recorded, and the RRM event evaluation is continued, and the time difference between T4 and T3 is 80 ms.
  • the RRM-related event is evaluated to be evaluated/exited, and the time window is immediately stopped, so that the measurement report is not triggered.
  • the alternative embodiments described below are also similar.
  • the terminal measures the signal quality of cell 3, which is still higher than Thresh-1 after layer 3 processing, and records the time T5, and continues the RRM event evaluation.
  • the time difference between T5 and T4 is 40 ms.
  • the terminal measures the signal quality of cell 3, which is still higher than Thresh-1 after layer 3 processing, records time T6, and continues RRM event evaluation.
  • the time difference between T6 and T5 is 40 ms.
  • the terminal measures the signal quality of cell 3, and is still higher than Thresh-1 after layer 3 processing.
  • the time T7 is recorded, and the RRM event evaluation is continued.
  • the time difference between T7 and T6 is 40 ms.
  • the evaluation time window ends at (T3+210ms), and the quality of the effective measurement signal of all received cells 3 is higher than Thresh-1 after layer 3 processing, and a total of 5 valid measurement results are received.
  • the time difference is 80ms, 40ms, 40ms, 40ms, the average is 50ms, which is equal to the specified comparison threshold of 50ms.
  • the time window is evaluated, so the measurement report such as the A4 event can be triggered, and the average value of the above time difference is also reported to 50ms. Base station. Otherwise, if the average of the above time differences is higher than the comparison threshold by 50 ms, it is not possible to trigger a measurement report such as an A4 event.
  • the network side sends an RRC message containing measurement control information to the UE, where the measurement task includes: searching for the quality of a neighboring cell signal is better than a certain threshold, thereby triggering an event (A4), indicating a relevant trigger threshold.
  • the measurement object is the unlicensed carrier frequency point f3.
  • the base station also notifies the terminal that if the average value of the time difference of the measured effective result is lower than or equal to 50 ms, the measurement report containing A4 can be triggered; in the measurement control information
  • the station notifies the terminal that the evaluation time window length for the unlicensed carrier is the same as the TTT, for example, 380 ms.
  • the UE After receiving the measurement task and configuration, the UE performs RRM measurement and related evaluation on the measurement object f3.
  • FIG. 11 is a schematic diagram of a method for triggering an unlicensed carrier measurement report according to an alternative embodiment of the present invention. As shown in FIG. 11, when T2, the terminal measures the signal quality of the cell 3, and is lower than Thresh-1 after layer 3 processing. , the trigger condition of A4 is not satisfied, and the RRM-related event evaluation admission processing is not performed.
  • the terminal measures the signal quality of cell 3, which is higher than Thresh-1 after layer 3 processing, and is the first effective measurement result that satisfies the event trigger condition, and then enters the RRM related event evaluation admission process. Since the cell 3 is deployed on the unlicensed carrier, the evaluation time window is started, but the base station is not configured. Therefore, the TTT is used instead of 380 ms by default. At this time, the evaluation time window is started, and the time T3 is recorded.
  • the terminal again measures the signal quality of cell 3, which is higher than Thresh-1 after layer 3 processing, so the time T4 is recorded, and the RRM event evaluation is continued, and the time difference between T4 and T3 is 170 ms.
  • the terminal measures the signal quality of cell 3, which is still higher than Thresh-1 after layer 3 processing, so the time T5 is recorded, and the RRM event evaluation is continued, and the time difference between T5 and T4 is 190 ms.
  • the evaluation time window ends at (T3+380ms), and the time window is evaluated.
  • the signal quality of all received cells 3 is higher than Thresh-1 after layer 3 processing, and a total of 3 valid measurement results are received.
  • the measurement report such as the A4 event
  • the conventional RRM processing mechanism but according to the content of the embodiment of the present invention, an evaluation mechanism is added and the system-defined condition is not satisfied, so the measurement report cannot be triggered. For example, the A4 event.
  • the network side sends an RRC message containing measurement control information to the UE, where the measurement task includes: searching for the quality of a neighboring cell signal is better than a certain threshold, thereby triggering an event (A8, defined as a new mobile Measurement event), indicating that the relevant trigger threshold is Thresh-1, and the measurement object is the unlicensed carrier frequency point f3.
  • the base station further informs the terminal that if the variance value of the time difference of the measured effective result is less than or equal to 300 ms, the measurement report containing A8 can be triggered; in the measurement control information, the base station notifies the terminal that the unlicensed carrier
  • the evaluation time window is 260ms long.
  • FIG. 12 is a schematic diagram of a method for triggering an unlicensed carrier measurement report according to an alternative embodiment 3 of the present invention. As shown in FIG. 12, when T2, the terminal measures the signal quality of the cell 3, and is lower than Thresh-1 after layer 3 processing. The trigger condition of A8 is not satisfied, and the RRM-related event evaluation admission processing is not performed.
  • the terminal measures the signal quality of cell 3, which is higher than Thresh-1 after layer 3 processing, and is the first effective measurement result that satisfies the event trigger condition, and then enters the RRM related event evaluation admission process. Since it is a measurement evaluation task for the A8 event, the evaluation time window is started and the time T3 is recorded.
  • the terminal measures the signal quality of cell 3 again. After layer 3 processing, it is still higher than Thresh-1, and the time T4 is recorded. The RRM event evaluation is continued, and the time difference between T4 and T3 is 30 ms.
  • the RRM-related event evaluation/exit processing is entered, and the evaluation time window is immediately stopped, so that the measurement report is not triggered, this embodiment End.
  • the principles of the following processing are similar and will not be repeated.
  • the terminal measures the signal quality of cell 3, which is higher than Thresh-1 after layer 3 processing, records time T5, and continues RRM event evaluation.
  • the time difference between T5 and T4 is 50 ms.
  • the terminal measures the signal quality of cell 3, which is higher than Thresh-1 after layer 3 processing, records time T6, and continues RRM event evaluation.
  • the time difference between T6 and T5 is 55 ms.
  • the terminal measures the signal quality of cell 3, which is higher than Thresh-1 after layer 3 processing, records time T7, and continues RRM event evaluation.
  • the time difference between T7 and T6 is 35 ms.
  • the terminal measures the signal quality of cell 3, which is still higher than Thresh-1 after layer 3 processing, and records the time T8, and continues the RRM event evaluation.
  • the time difference between T8 and T7 is 70 ms.
  • the evaluation time window ends at (T3+260ms), and the effective signal quality of all received cells 3 is higher than Thresh-1 after layer 3 processing.
  • a total of 6 valid measurement results are received, and 5 are received.
  • the time difference is 30ms, 50ms, 55ms, 35ms, 70ms, the variance value is 257.5ms, less than the specified threshold of 300ms, and the cell 3 satisfies the event admission condition to continuously evaluate the time window time, so it can trigger measurement reports such as A8 events, and also The variance value of the above time difference can be reported to the base station by 257.5 ms. Otherwise, if the variance of the above time difference is higher than the comparison threshold by 300 ms, the measurement report such as the A8 event may not be triggered.
  • the network side sends an RRC message containing the measurement control information to the UE, where the measurement task includes: searching for the quality of the signal of a neighboring cell is better than the quality of the current primary serving cell by an offset threshold Offset.
  • the A3 event is triggered.
  • the offset offset is set to 0, and the measurement object is the unlicensed carrier frequency point f3.
  • the base station also informs the terminal that if the time difference value of the effective result is measured, the number of low-latency samples less than or equal to 55 ms is greater than the threshold number of 3, and the measurement report containing the A3 event can be triggered;
  • the base station informs the terminal in the control information that the evaluation time window length for the unlicensed carrier is equal to TTT 250 ms by default.
  • the UE After receiving the measurement task and configuration, the UE performs RRM measurement and related evaluation on the measurement object f3.
  • FIG. 13 is a schematic diagram of an alternative embodiment 4 of the present invention. As shown in FIG. 13, when T2, the terminal measures the signal quality of the cell 3, and after the layer 3 processing, is lower than the signal quality of the current primary serving cell, and does not satisfy the A3.
  • the trigger condition is not subject to RRM-related event evaluation and admission processing.
  • the terminal measures the signal quality of the cell 3, and after the layer 3 processing is higher than the signal quality of the current primary serving cell, it is the first effective measurement result that satisfies the event triggering condition, and then enters the RRM related event evaluation admission processing. Since the cell 3 is deployed on an unlicensed carrier, the evaluation time window is started and the time T3 is recorded.
  • the terminal measures the signal quality of the cell 3, and after the layer 3 processing, it is still higher than the signal quality of the current primary serving cell, records the time T4, and continues the RRM event evaluation, and the time difference between T4 and T3 is 36 ms.
  • the terminal measures the signal quality of the cell 3, and after the layer 3 processing, is higher than the signal quality of the current primary serving cell, records the time T5, and continues the RRM event evaluation, and the time difference between the T5 and the T4 is 38 ms.
  • the terminal measures the signal quality of the cell 3, and after the layer 3 processing, is higher than the signal quality of the current primary serving cell, records the time T6, and continues the RRM event evaluation, and the time difference between the T6 and the T5 is 55 ms.
  • the terminal measures the signal quality of the cell 3, and after the layer 3 processing, is higher than the signal quality of the current primary serving cell, records the time T7, and continues the RRM event evaluation, and the time difference between the T7 and the T6 is 52 ms.
  • the terminal measures the signal quality of the cell 3, and after the layer 3 processing, is higher than the signal quality of the current primary serving cell, records the time T8, and continues the RRM event evaluation, and the time difference between the T8 and the T7 is 62 ms.
  • the evaluation time window ends at (T3+250ms), and the signal quality of all received cells 3 is higher than the signal quality of the current primary serving cell after layer 3 processing, and a total of 6 valid measurement results are received.
  • 5 time differences respectively 36ms, 38ms, 55ms, 52ms, 62ms
  • the number of low-latency samples below or equal to the comparison threshold of 55ms is 4> number of thresholds 3, so triggering measurement reports such as A3 events, reporting to the base station . Otherwise, if the total number of low-latency samples whose time difference is less than or equal to 55ms of the comparison threshold is less than or equal to three thresholds, the measurement report such as the A3 event may not be triggered.
  • the mobile measurement event involved in this embodiment may include at least one of the following: an intra-frequency trigger event, an inter-frequency trigger event, and a different system trigger event.
  • the embodiments of the present invention are not limited to the unlicensed carrier scenario, and other scenarios may also be borrowed.
  • Embodiments of the present invention also provide a storage medium.
  • the foregoing storage medium may be configured to store program code for performing the following steps:
  • the terminal After receiving the message carrying the measurement control information, the terminal performs measurement on the unlicensed carrier, where the measurement control information is used to indicate that the terminal performs measurement on multiple unlicensed target cells on the specified unlicensed carrier. ;
  • the terminal receives the measurement of the access condition that satisfies the radio resource management RRM time evaluation.
  • the evaluation time window is started, and the time values of the plurality of measurement results satisfying the admission condition are sequentially acquired in the evaluation time window until the time when the measurement result does not satisfy the admission condition or the evaluation time window ends;
  • the terminal obtains an output result by using a time value of the multiple measurement results as an input parameter of the preset rule, and determines, according to the output result, whether to trigger an operation of reporting the measurement report that includes the mobile measurement event.
  • modules or steps of the present invention can be implemented by a general-purpose computing device, which can be concentrated on a single computing device or distributed over a network of multiple computing devices. Alternatively, they may be implemented by program code executable by a computing device such that they may be stored in a storage device by a computing device and, in some cases, may be executed in a different order than herein.
  • the steps shown or described are either fabricated as integrated circuit modules, or a plurality of modules or steps are fabricated as a single integrated circuit module. Thus, embodiments of the invention are not limited to any specific combination of hardware and software.
  • the embodiment of the present invention solves the triggering of the measurement report according to the existing mechanism of the LTE system in the related art, which may cause a false trigger of the measurement report or an untriggered problem of the measurement report, and then arrive at the unlicensed carrier. Improve the user experience.

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Abstract

本文公布一种非授权载波测量报告的处理方法及装置,该方法包括:终端在接收到网络侧发送携带有测量控制信息的消息之后,对非授权载波进行测量;终端从接收到满足RRM时间评估的准入条件的测量结果时开始启动评估时间窗,并在评估时间窗内依次获取满足准入条件的多个测量结果的时间值,直到测量结果不满足准入条件或评估时间窗的时间结束;终端将多个测量结果的时间值作为预设规则的输入参数得到输出结果,并依据输出结果确定是否触发上报含有移动测量事件的测量报告的操作。

Description

非授权载波测量报告的处理方法及装置 技术领域
本申请涉及但不限于通信领域,尤其是一种非授权载波测量报告的处理方法及装置。
背景技术
在蜂窝移动通信系统中,小区重选和切换是其重要的功能。为了顺利实现小区重选,终端(也称为用户设备,User Equipment,简称为UE)需要对不同小区的信号质量进行测量,以便选择合适的小区进行驻留。UE在某个小区与网络建立连接之后,仍然需要对其相邻小区的信号质量进行测量,以便选择合适的小区进行切换,以满足移动性要求。
图1是相关技术中演进的UMTS陆地无线接入网EUTRAN系统中的测量过程流程图,如图1所示,在连接状态下该测量的过程是:网络侧的演进的UMTS陆地无线接入网(Evolved UMTS Terrestrial Radio Access Network,简称为EUTRAN,其中,UMTS为通用移动通信系统Universal Mobile Telecommunications System)将测量控制消息发送给UE,其中,该测量控制消息中包括测量标识、测量对象、报告配置以及测量的其他相关属性。UE根据测量控制消息中的测量对象、报告配置去执行测量,测量的过程是,物理层执行实际的测量,将测量结果上报给层三,层三经过处理后根据处理的测量结果判断是否触发测量报告,如果触发,则生成测量报告上报给网络侧。
测量标识作为整个测量配置的索引,包含了两个子标识,测量对象子标识和报告配置子标识,每个子标识又包含了各自的相关属性,其中,测量对象子标识包含了测量对象属性,例如,载频、邻区列表等;报告配置子标识包含了报告配置属性,例如,事件触发上报或周期上报,触发事件由触发条件定义(触发条件A1、A2等),触发条件相关的门限、偏移等,触发时间长度(Time To Trigger,简称为TTT),上报次数等。
对于事件触发的测量任务,当测量对象满足事件的准入条件(例如,邻 区信号质量优于门限)的持续时间大于或等于TTT时,才被认为是满足事件触发条件的测量对象。当有测量对象满足事件的触发条件后,上报测量报告给网络侧,上报报告中的测量对象是根据网络设定的测量来排序的,最优的在前面。图2为相关技术中触发时间长度TTT的示意图,如图2所示,以邻接小区信号质量高于指定门限触发上报测量报告为例,终端在T3收到物理层的测量结果,进行层三处理后判断满足事件的准入条件,启动TTT,TTT到T8结束,在此期间,终端收到的所有物理层测量结果,进行层三处理后都满足事件的准入条件,于是终端触发上报测量报告。如果在此期间,任何一个时间收到的底层测量结果,进行层三处理后不满足事件的准入条件,则TTT停止,等待下一个T3时刻的到来重新启动。
为了向移动用户提供更高的数据速率,高级长期演进系统(Long Term Evolution Advance,简称为LTE-A)提出了载波聚合技术(Carrier Aggregation,简称为CA),其目的是为具有相应能力的UE提供更大宽带,提高UE的峰值速率。LTE中,系统支持的最大下行传输带宽为20MHz,载波聚合是将两个或者更多的分量载波(Component Carriers,简称为CC)聚合起来支持大于20MHz,最大不超过100MHz的传输带宽。引入载波聚合技术后,处于连接状态的UE可以同时通过多个分量载波(Component Carriers,简称为CC)与源基站进行通信,引入CA技术后,还引入了主服务小区(Primary Cell,简称为Pcell,)和辅服务小区(Secondary Cell,简称为Scell)。
由于频谱资源的匮乏,以及移动用户的大流量业务的激增,采用高频点如3.5GHz进行热点覆盖的需求日益明显,采用低功率的节点成为新的应用场景,为的是增加用户吞吐量和增强移动性能。但是由于高频点的信号衰减比较厉害,小区的覆盖范围比较小,并且与已有的小区不共站点,目前不少公司和运营商都倾向于寻求一种新的增强方案,双连接(Dual Connectivity)就是其中之一。双连接下终端可以同时与两个以上的网络节点保持连接,但是控制面连接只与其中一个小区比如宏小区有连接。终端的多个服务节点是多个基站,基站之间的时延不可忽略。比如,一个网络节点是宏基站称为MeNB,另外一个网络节点是小小区基站称为SeNB。
随着数据业务的快速增长,在不久的将来,授权频谱将不能承受如此巨 大的数据量;所以LTE运营商考虑在非授权频谱资源(Unlicensed Carrier)中部署LTE,通过非授权频谱来分担授权载波中的数据流量。非授权载波(免授权频谱)是指在满足政府部门(如,国家无线电管理委员会)有关规定(无线电管制)下,不需要授权就能直接使用的频谱(或载波)。例如,微波炉、遥控玩具飞机、无线鼠标、无线键盘、高保真无线上网(Wireless Fidelity,简称为WiFi)等都使用了非授权载波。在有的情况下,非授权载波需要通过竞争,比如先听后讲(Listen Before Talk,简称为LBT)机制才能使用。如果基站(包括WiFi接入点)没有竞争到资源,则不能使用非授权载波。非授权载波和授权载波可以通过载波聚合的方式使用,也可以通过双连接的方式使用,非授权载波一般作为数据传输的补充,即授权载波作为主服务小区,非授权载波作为辅服务小区。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
非授权载波资源有很大的特殊性,在此场景下,测量的过程仍然按照LTE系统的测量过程来进行,但是对于测量报告的触发,由于非授权载波环境下,非授权载波上的导频资源需要通过竞争才能获取使用,包括eNB发送的用于终端无线资源管理(Radio Resource Management,简称为RRM)测量的信号,如果资源竞争失败,用于测量的信号则无法发送,终端无法测量到非授权载波的信号强度和/或质量,如果仍然按照LTE系统的已有机制来进行测量报告的触发,则可能会引起测量报告的误触发,或者测量报告的不触发,导致基站不能根据可靠准确的RRM测量报告进行合理的移动性处理判决,严重时会产生掉话。
本文提供了一种非授权载波测量报告的处理方法及装置,以至少解决相关技术中按照LTE系统的已有机制来进行测量报告的触发,对于非授权载波而言会引起测量报告的误触发,或者测量报告的不触发的问题。
根据本发明实施例的一个方面,提供了一种非授权载波测量报告的处理方法,包括:终端在接收到网络侧发送携带有测量控制信息的消息之后,对 非授权载波进行测量,其中,所述测量控制信息用于指示所述终端对指定的非授权载波上的多个非授权目标小区进行测量;所述终端从接收到满足无线资源管理RRM时间评估的准入条件的测量结果时开始启动评估时间窗,并在评估时间窗内依次获取满足所述准入条件的多个测量结果的时间值,直到所述测量结果不满足所述准入条件或所述评估时间窗的时间结束;所述终端将所述多个测量结果的时间值作为预设规则的输入参数得到输出结果,并依据所述输出结果确定是否触发上报含有移动测量事件的所述测量报告的操作。
可选地,所述终端将所述多个测量结果的时间值作为预设规则的输入参数得到输出结果的方式包括以下至少之一:所述终端计算所述多个测量结果的时间值中相邻两个时间值之间的多个第一时间差值;并计算所述多个第一时间差值的平均值;所述终端计算所述多个测量结果的时间值中相邻两个时间值之间的多个第二时间差值,并计算所述多个第二时间差值的方差值;所述终端计算所述多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定所述多个第三时间差值中小于或等于预设阈值的低延时采样数量;所述终端计算所述多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定所述第三时间差值是否都小于或等于所述预设阈值。
可选地,所述终端依据所述输出结果确定是否触发上报含有移动测量事件的测量报告的操作包括:所述终端判断所述平均值是否小于或等于第一门限值;在判断结果为是时,所述终端触发上报所述测量报告的操作;在判断结果为否时,所述终端禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,在判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,所述终端在上报所述测量报告的同时,上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
可选地,所述终端依据所述输出结果确定是否触发上报含有移动测量事件的测量报告的操作包括:所述终端判断所述方差值是否小于或等于第二门限值;在判断结果为是时,所述终端触发上报所述测量报告的操作;在判断结果为否时,所述终端禁止触发上报所述测量报告的操作或停止所述评估时 间窗;或,在判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,所述终端在上报所述测量报告的同时,并上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
可选地,所述终端依据所述输出结果确定是否触发上报含有移动测量事件的测量报告的操作包括:所述终端判断所述低延时采样数量是否大于第三门限值;在判断结果为是时,所述终端触发上报所述测量报告的操作;在判断结果为否时,所述终端禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,在判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,所述终端在上报所述测量报告的同时,并上报用于指示所述移动测量事件不可靠测量事件的指示信息。
可选地,所述终端依据所述输出结果确定是否触发上报含有移动测量事件的测量报告的操作包括:在所述第三时间差值都小于或等于所述预设阈值时,所述终端触发上报所述测量报告的操作;在所述第三时间差值不都小于或等于所述预设阈值时,所述终端禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,在所述第三时间差值不都小于或等于所述预设阈值,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,所述终端在上报所述测量报告的同时,上报用于指示所述移动测量事件不可靠测量事件的指示信息。
可选地,所述评估时间窗为网络侧为所述终端预先配置的时间长度,或为无线资源管理RRM测量配置中的触发时间长度TTT。
根据本发明实施例的再一个方面,提供了一种非授权载波测量报告的处理装置,应用于终端侧,包括:测量模块,设置为:在接收到网络侧发送携带有测量控制信息的消息之后,对非授权载波进行测量,其中,所述测量控制信息用于指示所述终端对指定的非授权载波上的多个非授权目标小区进行测量;获取模块,设置为:从接收到满足无线资源管理RRM时间评估的准入条件的测量结果时开始启动评估时间窗,并在评估时间窗内依次获取满足所述准入条件的多个测量结果的时间值,直到所述测量结果不满足所述准入条件或所述评估时间窗的时间结束;处理模块,设置为:将所述多个测量结果的时间值作为预设规则的输入参数得到输出结果,并依据所述输出结果确 定是否触发上报含有移动测量事件的所述测量报告的操作。
可选地,所述处理模块包括以下至少之一:第一计算单元,设置为:所述终端计算所述多个测量结果的时间值中相邻两个时间值之间的多个第一时间差值,并计算所述多个第一时间差值的平均值;第二计算单元,设置为:计算所述多个测量结果的时间值中相邻两个时间值之间的多个第二时间差值,并计算所述多个第二时间差值的方差值;第三计算单元,设置为:计算所述多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定所述多个第三时间差值中小于或等于预设阈值的低延时采样数量;第四计算单元,设置为:计算所述多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定所述第三时间差值是否都小于或等于所述预设阈值。
可选地,所述处理模块还包括:第一判断单元,设置为:判断所述平均值是否小于或等于第一门限值;第一触发单元,设置为:在第一判断单元判断结果为是时,触发上报所述测量报告的操作;第一禁止单元,设置为:在第一判断单元判断结果为否时,禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,第一上报单元,设置为:在第一判断单元判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,在上报所述测量报告的同时上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
可选地,所述处理模块还包括:第二判断单元,设置为:判断所述方差值是否小于或等于第二门限值;第二触发单元,设置为:在第二判断单元判断结果为是时,触发上报所述测量报告的操作;第二禁止单元,设置为:在第二判断单元判断结果为否时,禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,第二上报单元,设置为:在第二判断单元判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,在上报所述测量报告的同时上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
可选地,所述处理模块还包括:第三判断单元,设置为:判断所述低延时采样数量是否大于第三门限值;第三触发单元,设置为:在第三判断单元 判断结果为是时,触发上报所述测量报告的操作;第三禁止单元,设置为:在第三判断单元判断结果为否时,禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,第三上报单元,设置为:在第三判断单元判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,在上报所述测量报告的同时,上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
可选地,所述处理模块包括:第四触发单元,设置为:在所述第三时间差值都小于或等于所述预设阈值时,触发上报所述测量报告的操作;第四禁止单元,设置为:在所述第三时间差值不都小于或等于所述预设阈值时,禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,第四上报单元,设置为:在所述第三时间差值不都小于或等于所述预设阈值,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,在上报所述测量报告的同时上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
可选地,所述评估时间窗为网络侧为所述终端预先配置的时间长度,或为无线资源管理RRM测量配置中的触发时间长度TTT。
根据本发明实施例的又一个方面,提供了一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令被处理器执行时实现上述方法。
通过本发明实施例,采用将多个测量结果的时间值作为预设规则的输入参数并得到输出结果,并不是统一的需要所有的测量结果的时间值经过处理后都满足条件才触发上报操作,也即并不相当于相关技术中通过确定获取到的多个测量结果是否都满足准入条件,并在都满足条件的情况下,才能触发上报含有移动测量事件的测量报告的操作的方式,进而解决了相关技术中按照LTE系统的已有机制来进行测量报告的触发,对于非授权载波而言会引起测量报告的误触发,或者测量报告的不触发的问题,进而到达了提高用户体验的效果。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1是相关技术中演进的UMTS陆地无线接入网EUTRAN系统中的测量过程流程图;
图2为相关技术中触发时间长度TTT的示意图;
图3是根据本发明实施例的非授权载波测量报告的处理方法的流程图;
图4是根据本发明实施例的非授权载波测量报告的处理装置的结构框图;
图5是根据本发明实施例的非授权载波测量报告的处理装置的可选结构框图一;
图6是根据本发明实施例的非授权载波测量报告的处理装置的可选结构框图二;
图7是根据本发明实施例的非授权载波测量报告的处理装置的可选结构框图三;
图8是根据本发明实施例的非授权载波测量报告的处理装置的可选结构框图四;
图9是根据本发明实施例的非授权载波测量报告的处理装置的可选结构框图五;
图10是根据本发明可选实施例一的触发非授权载波测量报告的方法示意图;
图11是根据本发明可选实施例二的触发非授权载波测量报告的方法示意图;
图12是根据本发明可选实施例三的触发非授权载波测量报告的方法示意图;
图13是根据本发明可选实施例四的触发非授权载波测量报告的方法示意图。
本发明的实施方式
下文中将参考附图并结合实施例来详细说明本发明的实施方式。需要说 明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。
需要说明的是,本文的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。
在本实施例中提供了一种非授权载波测量报告的处理方法,图3是根据本发明实施例的非授权载波测量报告的处理方法的流程图,如图3所示,该流程包括如下步骤:
步骤S302:终端在接收到网络侧发送携带有测量控制信息的消息之后,对非授权载波进行测量,其中,测量控制信息用于指示终端对指定的非授权载波上的多个非授权目标小区进行测量;
步骤S304:终端从接收到满足无线资源管理RRM时间评估的准入条件的测量结果时开始启动评估时间窗,并在评估时间窗内依次获取满足准入条件的多个测量结果的时间值,直到测量结果不满足准入条件或评估时间窗的时间结束;
步骤S306:终端将多个测量结果的时间值作为预设规则的输入参数得到输出结果,并依据输出结果确定是否触发上报含有移动测量事件的测量报告的操作。
通过上述步骤S302至步骤S306可知,在本实施例中是将多个测量结果的时间值作为预设规则的输入参数并得到输出结果,并不是统一的需要所有的测量结果的时间值经过处理后都满足条件才触发上报操作,也即并不相当于相关技术中通过确定获取到的多个测量结果是否都满足准入条件,并在都满足条件的情况下,才能触发上报含有移动测量事件的测量报告的操作的方式,进而解决了相关技术中按照LTE系统的已有机制来进行测量报告的触发,对于非授权载波而言会引起测量报告的误触发,或者测量报告的不触发的问题,进而到达了提高用户体验的效果。
对于本实施例步骤S306中涉及到的终端将多个测量结果的时间值作为预设规则的输入参数得到输出结果的方式,在本实施例的可选实施方式中可 以包括以下至少之一:
方式一:终端计算多个测量结果的时间值中相邻两个时间值之间的多个第一时间差值;并计算多个第一时间差值的平均值;
方式二:终端计算多个测量结果的时间值中相邻两个时间值之间的多个第二时间差值,并计算多个第二时间差值的方差值;
方式三:终端计算多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定多个第三时间差值中小于或等于预设阈值的低延时采样数量;
本实施例中的低延时采样数量指的是小于或等于该预设阈值的第三时间差值的数量。
方式四:终端计算多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定第三时间差值是否都小于或等于预设阈值。
基于上述不同的方式,在本实施例的可选实施方式中可以采用与之对应的不同的依据输出结果确定是否触发上报测量报告的操作方式,在本实施例中采用上述方式一时,本实施例步骤S306中涉及到的终端依据输出结果确定是否触发上报含有移动测量事件的测量报告的操作的方式,可以通过如下方式来实现:
步骤S11:终端判断平均值是否小于或等于第一门限值;
步骤S12:在判断结果为是时,终端触发上报测量报告的操作;
步骤S13:在判断结果为否时,终端禁止触发上报测量报告的操作或停止评估时间窗;或,在判断结果为否,且网络侧仍然指示终端触发上报测量报告的操作时,终端在上报测量报告的同时,上报用于指示移动测量事件为不可靠测量事件的指示信息。
上述步骤S12中涉及到的触发上报测量报告操作的方式,在本实施例的可选实施方式中可以是按照已有3GPP中协议规定的触发上报测量报告的方式来进行触发。
在本实施例中的应用场景中,该方式一可以是:终端UE在网络配置的评估时间窗时间内,收到n个经过物理层层1过滤后向层3上报的测量结 果,分别为R0,R1..Rn-1,其中R0为第一个待层三的分析评估值,经过层三判断,满足RRM事件评估的准入条件,于是启动评估时间窗,此时的时间设定为T0,R1为第二个收到的待层三的分析评估值,此时的时间记录为T1,以此类推,收到Rn-1的测量结果的时间记录为Tn-1。而相邻两个待层三的分析评估值的时间差,分别为T1-T0,T2-T1……Tn-1-Tn-2。
进而对上述记录的T1-T0,T2-T1。。Tn-1-Tn-2时间差值进行如下一种统计处理:计算平均值,即:Mean{(T1-T0),(T2-T1)……(Tn-1-Tn-2)}=Tn-1-T0/(n-1);继而判定计算的平均值是否超过或者低于eNB配置的某个长度门限TLthresh1。如果满足系统定义的条件,则触发测量报告以RRM移动测量事件的形式上报给eNB,否则不能触发相关事件的上报,或者停止评估时间窗。
在本实施例中采用上述方式二时,本实施例步骤S306中涉及到的终端依据输出结果确定是否触发上报含有移动测量事件的测量报告的操作的方式,可以通过如下方式来实现:
步骤S21:终端判断方差值是否小于或等于第二门限值;
步骤S22:在判断结果为是时,终端触发上报测量报告的操作;
步骤S23:在判断结果为否时,终端禁止触发上报测量报告的操作或停止评估时间窗;或,在判断结果为否,且网络侧仍然指示终端触发上报测量报告的操作时,终端在上报测量报告的同时,并上报用于指示移动测量事件为不可靠测量事件的指示信息。
在本实施例中的应用场景中,该方式二可以是:终端UE在网络配置的评估时间窗时间内,收到n个经过物理层层1过滤后向层3上报的测量结果,分别为R0,R1..Rn-1,其中R0为第一个待层三的分析评估值,经过层三判断,满足RRM事件评估的准入条件,于是启动评估时间窗,此时的时间设定为T0,R1为第二个收到的待层三的分析评估值,此时的时间记录为T1,以此类推,收到Rn-1的测量结果的时间记录为Tn-1。而相邻两个待层三的分析评估值的时间差,分别为T1-T0,T2-T1……Tn-1-Tn-2。
进而对上述记录的T1-T0,T2-T1……Tn-1-Tn-2时间差值进行如下一种 统计处理:计算方差值,即:VAR{(T1-T0),(T2-T1)……(Tn-1-Tn-2)}。继而判定计算的方差值是否超过或者低于eNB配置的某个长度门限TLthresh2。如果满足系统定义的条件,则触发测量报告可以以RRM移动测量事件的形式上报给eNB,否则不能触发相关事件的上报,或者停止评估时间窗。
在本实施例中采用上述方式三时,本实施例步骤S306中涉及到的终端依据输出结果确定是否触发上报含有移动测量事件的测量报告的操作的方式,可以通过如下方式来实现:
步骤S31:终端判断低延时采样数量是否大于第三门限值;
步骤S32:在判断结果为是时,终端触发上报测量报告的操作;
步骤S33:在判断结果为否时,终端禁止触发上报测量报告的操作或停止评估时间窗;或,在判断结果为否,且网络侧仍然指示终端触发上报测量报告的操作时,终端在上报测量报告的同时,并上报用于指示移动测量事件为不可靠测量事件的指示信息。
在本实施例中的应用场景中,该方式三可以是:终端UE在网络配置的评估时间窗时间内,收到n个经过物理层层1过滤后向层3上报的测量结果,分别为R0,R1..Rn-1,其中R0为第一个待层三的分析评估值,经过层三判断,满足RRM事件评估的准入条件,于是启动评估时间窗,此时的时间设定为T0,R1为第二个收到的待层三的分析评估值,此时的时间记录为T1,以此类推,收到Rn-1的测量结果的时间记录为Tn-1。而相邻两个待层三的分析评估值的时间差,分别为T1-T0,T2-T1……Tn-1-Tn-2。
进而对上述记录的T1-T0,T2-T1……Tn-1-Tn-2时间差值进行如下一种统计处理:统计上述时间差值中,低于或等于eNB配置的某个长度门限TLthresh3的低延时采样个数,如果低延时采样个数超过eNB配置的某个个数门限Nthresh,则触发测量报告可以以RRM移动测量事件的形式上报给eNB,否则不能触发相关事件的上报,或者停止评估时间窗。
在本实施例中采用上述方式三时,本实施例步骤S306中涉及到的终端依据输出结果确定是否触发上报含有移动测量事件的测量报告的操作的方 式,可以通过如下方式来实现:在第三时间差值都小于或等于预设阈值时,终端触发上报测量报告的操作或停止评估时间窗;或,在在第三时间差值不都小于或等于预设阈值,且网络侧仍然指示终端触发上报测量报告的操作时,终端在上报测量报告的同时,并上报用于指示移动测量事件为不可靠测量事件的指示信息。
在本实施例中涉及到的评估时间窗为网络侧为终端预先配置的时间长度,或为无线资源管理RRM测量配置中的触发时间长度TTT。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到根据上述实施例的方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本发明实施例的技术方案可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括多个指令用以使得一台终端设备(可以是手机,计算机,服务器,或者网络设备等)执行本发明实施例所述的方法。
在本实施例中还提供了一种非授权载波测量报告的处理装置,该装置用于实现上述实施例及可选实施方式,已经进行过说明的不再赘述。如以下所使用的,术语“模块”可以实现预定功能的软件和/或硬件的组合。尽管以下实施例所描述的装置可以以软件来实现,但是硬件,或者软件和硬件的组合的实现也是可能并被构想的。
图4是根据本发明实施例的非授权载波测量报告的处理装置的结构框图,该装置应用于终端侧,如图4所示,该装置包括:测量模块42,设置为:在接收到网络侧发送携带有测量控制信息的消息之后,对非授权载波进行测量,其中,测量控制信息用于指示终端对指定的非授权载波上的多个非授权目标小区进行测量;获取模块44,与测量模块42耦合连接,设置为:从接收到满足无线资源管理RRM时间评估的准入条件的测量结果时开始启动评估时间窗,并在评估时间窗内依次获取满足准入条件的多个测量结果的时间值,直到测量结果不满足准入条件或评估时间窗的时间结束;处理模块46,与获取模块44耦合连接,设置为:将多个测量结果的时间值作为预设规则的输入参数得到输出结果,并依据输出结果确定是否触发上报含有移动 测量事件的测量报告的操作。
图5是根据本发明实施例的非授权载波测量报告的处理装置的可选结构框图一,如图5所示,该处理模块46包括以下至少之一:第一计算单元52,设置为:终端计算多个测量结果的时间值中相邻两个时间值之间的多个第一时间差值,并计算多个第一时间差值的平均值;第二计算单元54,设置为:计算多个测量结果的时间值中相邻两个时间值之间的多个第二时间差值,并计算多个第二时间差值的方差值;第三计算单元56,设置为:计算多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定多个第三时间差值中小于或等于预设阈值的低延时采样数量;第四计算单元58,设置为:计算多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定第三时间差值是否都小于或等于预设阈值。
图6是根据本发明实施例的非授权载波测量报告的处理装置的可选结构框图二,如图6所示,该处理模块46还包括:第一判断单元62,与第一计算单元52耦合连接,设置为:判断平均值是否小于或等于第一门限值;第一触发单元64,与第一判断单元62耦合连接,设置为:在第一判断单元62判断结果为是时,触发上报测量报告的操作;第一禁止单元66,与第一触发单元64耦合连接,设置为:在第一判断单元62判断结果为否时,禁止触发上报测量报告的操作或停止评估时间窗;或,第一上报单元68,与第一触发单元64耦合连接,设置为:在第一判断单元62判断结果为否,且网络侧仍然指示终端触发上报测量报告的操作时,在上报测量报告的同时,上报用于指示移动测量事件为不可靠测量事件的指示信息。
图7是根据本发明实施例的非授权载波测量报告的处理装置的可选结构框图三,如图7所示,处理模块46还包括:第二判断单元72,与第二计算单元54耦合连接,设置为:判断方差值是否小于或等于第二门限值;第二触发单元74,与第二判断单元72耦合连接,设置为:在第二判断单元72判断结果为是时,触发上报测量报告的操作;第二禁止单元76,与第二触发单元74耦合连接,设置为:在第二判断单元72判断结果为否时,禁止触发上报测量报告的操作或停止评估时间窗;或,第二上报单元78,与第二触发单元74耦合连接,设置为:在第二判断单元72判断结果为否,且网络侧仍然 指示终端触发上报测量报告的操作时,在上报测量报告的同时,上报用于指示移动测量事件为不可靠测量事件的指示信息。
图8是根据本发明实施例的非授权载波测量报告的处理装置的可选结构框图四,如图8所示,处理模块46还包括:第三判断单元82,与第三计算单元56耦合连接,设置为:判断低延时采样数量是否大于第三门限值;第三触发单元84,与判断单元82耦合连接,设置为:在第三判断单元82判断结果为是时,触发上报测量报告的操作;第三禁止单元86,与第三触发单元84耦合连接,设置为:在第三判断单元82判断结果为否时,禁止触发上报测量报告的操作或停止评估时间窗;或,第三上报单元88,与第三触发单元84耦合连接,设置为:在第三判断单元82判断结果为否,且网络侧仍然指示终端触发上报测量报告的操作时,在上报测量报告的同时,上报用于指示移动测量事件为不可靠测量事件的指示信息。
图9是根据本发明实施例的非授权载波测量报告的处理装置的可选结构框图五,如图9所示,处理模块46还包括:第四触发单元92,设置为:在第三时间差值都小于或等于预设阈值时,触发上报测量报告的操作;第四禁止单元94,与第四触发单元92耦合连接,设置为:在第三时间差值不都小于或等于预设阈值时,禁止触发上报测量报告的操作或停止评估时间窗;或,第四上报单元,设置为:在第三时间差值不都小于或等于预设阈值,且网络侧仍然指示终端触发上报测量报告的操作时,在上报测量报告的同时上报用于指示移动测量事件为不可靠测量事件的指示信息。
可选地,评估时间窗为网络侧为终端预先配置的时间长度,或为无线资源管理RRM测量配置中的触发时间长度TTT。
上述模块是可以通过软件或硬件来实现的,对于后者,可以通过以下方式实现,但不限于此:上述模块均位于同一处理器中;或者,上述模块分别位于多个处理器中。
下面结合本发明的可选实施例对本申请进行举例说明;
本可选实施例提供了一种触发非授权载波测量报告的方法,该方法的实施过程包括:
终端UE在网络配置的评估时间窗时间内,收到n个经过物理层层1过滤后向层3上报的测量结果,分别为R0,R1…….Rn-1,其中R0为第一个待层三的分析评估值,经过层三判断,满足RRM事件评估的准入条件,于是启动评估时间窗,此时的时间设定为T0,R1为第二个收到的待层三的分析评估值,此时的时间记录为T1,以此类推,收到Rn-1的测量结果的时间记录为Tn-1。而相邻两个待层三的分析评估值的时间差,分别为T1-T0,T2-T1……Tn-1-Tn-2。这些时间差可以不相同,因为eNB受到LBT机制的约束,发送的测量导频信号的不确定性导致UE可以测量而获得的有效分析评估值,在时间轴上是不确定且非周期的。
评估时间窗,可以由eNB配置给终端,如果没有配置,也可以采用当前RRM测量配置中的TTT长度来作为当前测量任务的评估时间窗的长度。
如果RRM事件评估过程中一直不满足准出/退出条件,则UE在评估时间窗结束时,对上述记录的T1-T0,T2-T1……Tn-1-Tn-2时间差值进行如下一种或者多种统计处理:
(1):计算平均值,即:Mean{(T1-T0),(T2-T1)……(Tn-1-Tn-2)}=Tn-1-T0/(n-1);继而判定计算的平均值是否超过或者低于eNB配置的某个长度门限TLthresh1。如果满足系统定义的条件,则触发测量报告以RRM移动测量事件的形式上报给eNB,否则不能触发相关事件的上报。
(2):计算方差值,即:VAR{(T1-T0),(T2-T1)……(Tn-1-Tn-2)}。继而判定计算的方差值是否超过或者低于eNB配置的某个长度门限TLthresh2。如果满足系统定义的条件,则触发测量报告可以以RRM移动测量事件的形式上报给eNB,否则不能触发相关事件的上报。
(3):统计上述时间差值中,低于或等于eNB配置的某个长度门限TLthresh3的低延时采样个数,如果低延时采样个数超过eNB配置的某个个数门限Nthresh,则触发测量报告可以以RRM移动测量事件的形式上报给eNB,否则不能触发相关事件的上报。
上述内容可以作为全新的RRM移动测量事件独立于已有的RRM移动测量事件进行上报。
上述内容也可以和已有的RRM移动测量事件联合地上报,提供给eNB补充的有益参考信息。
eNB通过UE上报的上述信息内容,可以获悉到UE侧所能测量到的导频信号真实图样分布情况,从而更加了解UE侧在非授权载波上的无线状况。
通过本可选实施例,可以解决相关技术中RRM测量报告的误触发,或者测量报告的不触发,导致基站根据不准确的测量报告进行不合理的决策,严重时会产生掉话的问题,提高了用户的服务体验。
需要说明的是,本可选实施例原理可以不限于LTE系统,也适用于所有需要通过竞争才能使用非授权载波资源的通讯系统;通过本发明实施例,可以防止终端误上报“不可靠的”移动事件,使得网络在对终端移动性/无线资源管理方面更加可靠高效。
下面结合附图和本可选实施例的实施例对本可选实施例进行详细说明;
在本可选实施例中,涉及到的基站以两个小区为例,其中小区1部署在授权载波上工作频点是f1,小区3部署在非授权载波上工作频点是f3。对于授权载波上的小区通过RRM测量和上报,在本实施例中仅仅针对小区3的RRM测量评估。
实施例一
如图1所示,网络侧发送含有测量控制信息的RRC消息给UE,其中包含一个测量任务是:搜寻测量某邻区信号的质量优于某门限,从而触发事件(A4),指示相关触发门限为Thresh-1,测量对象为非授权载波频点f3。另外,在测量控制信息中基站还通知终端,如果测量有效结果的时间差的平均值,低于或等于50ms,才能触发含有A4的测量报告;在测量控制信息中基站通知终端,对于非授权载波的评估时间窗长度比如为210ms。UE接收到该测量任务和配置后,对测量对象f3执行RRM测量和相关评估。
图10是根据本发明可选实施例一的触发非授权载波测量报告的方法示意图,如图10所示,T2时,终端测量到小区3的信号质量,经过层三处理后低于Thresh-1,不满足A4的触发条件,不进行RRM事件评估准入处理。
T3时,终端测量到小区3的信号质量,经过层三处理后高于Thresh-1,是第一个满足事件触发条件的有效测量结果,于是进入RRM相关事件评估准入处理。由于小区3是部署在非授权载波上的,因此启动评估时间窗,并记录下时间T3。
T4时,终端再次测量到小区3的信号质量,经过层三处理后高于Thresh-1,于是记录下时间T4,继续RRM事件评估,T4与T3时间差是80ms。
如果此时的小区3的信号质量,经过层三处理后低于Thresh-1,则进入RRM相关事件评估准出/退出处理,随即立刻停止评估时间窗,从而不会触发测量报告,本可选实施例结束。下述本可选实施例也是类似的。
T5时,终端测量到小区3的信号质量,经过层三处理后仍然高于Thresh-1,记录下时间T5,继续RRM事件评估,T5与T4时间差是40ms。
T6时,终端测量到小区3的信号质量,经过层三处理后仍然高于Thresh-1,记录下时间T6,继续RRM事件评估,T6与T5时间差是40ms。
T7时,终端测量到小区3的信号质量,经过层三处理后仍然高于Thresh-1,记录下时间T7,继续RRM事件评估,T7与T6时间差是40ms。
稍后,评估时间窗在(T3+210ms)处结束,所有收到的小区3的有效测量信号质量,经过层三处理后都高于Thresh-1,一共收到5个有效测量结果,有4个时间差,分别为80ms,40ms,40ms,40ms,平均值为50ms,与指定比较门限50ms相等,评估时间窗,因此可以触发测量报告比如A4事件,并且也把上述时间差的平均值50ms也上报给基站。否则如果上述时间差的平均值高于比较门限50ms,则不可以触发测量报告比如A4事件。
实施例二
如图1所示,网络侧发送含有测量控制信息的RRC消息给UE,其中包含一个测量任务是:搜寻测量某邻区信号的质量优于某门限,从而触发事件(A4),指示相关触发门限为Thresh-1,测量对象为非授权载波频点f3。另外,在测量控制信息中基站还通知终端,如果测量有效结果的时间差的平均值,低于或等于50ms,才能触发含有A4的测量报告;在测量控制信息中基 站通知终端,对于非授权载波的评估时间窗长度和TTT相同比如为380ms。UE接收到该测量任务和配置后,对测量对象f3执行RRM测量和相关评估。
图11是根据本发明可选实施例二的触发非授权载波测量报告的方法示意图,如图11所示,T2时,终端测量到小区3的信号质量,经过层三处理后低于Thresh-1,不满足A4的触发条件,不进行RRM相关事件评估准入处理。
T3时,终端测量到小区3的信号质量,经过层三处理后高于Thresh-1,是第一个满足事件触发条件的有效测量结果,于是进入RRM相关事件评估准入处理。由于小区3是部署在非授权载波上的,于是启动评估时间窗,但是基站没有配置,因此采用TTT来默认代替即380ms,此时启动评估时间窗,并记录下时间T3。
T4时,终端再次测量到小区3的信号质量,经过层三处理后高于Thresh-1,于是记录下时间T4,继续RRM事件评估,T4与T3时间差是170ms。
评估时间窗如果此时的小区3的信号质量,经过层三处理后低于Thresh-1,则进入RRM相关事件评估准出/退出处理,随即立刻停止评估时间窗,从而不会触发测量报告,本实施例结束。
T5时,终端测量到小区3的信号质量,经过层三处理后仍然高于Thresh-1,于是记录下时间T5,继续RRM事件评估,T5与T4时间差是190ms。
稍后评估时间窗在(T3+380ms)处结束,评估时间窗,所有收到的小区3的信号质量,经过层三处理后都高于Thresh-1,,一共收到3个有效测量结果,有2个时间差,分别为170ms,190ms,平均值为180ms,大于指定的比较门限50ms,于是小区3不满足事件评估时间窗触发条件,UE不可以触发测量报告比如A4事件。
在本实施例中如果按照传统的RRM处理机制,是可以触发测量报告比如A4事件的,但是根据本发明实施例内容,多了一层评估机制且不满足系统定义的条件,因此不能触发测量报告比如A4事件。
实施例三
如图1所示,网络侧发送含有测量控制信息的RRC消息给UE,其中包含一个测量任务是:搜寻测量某邻区信号的质量优于某门限,从而触发事件(A8,定义为新的移动测量事件),指示相关触发门限为Thresh-1,测量对象为非授权载波频点f3。另外,在测量控制信息中基站还通知终端,如果测量有效结果的时间差的方差值,低于或等于300ms,才能触发含有A8的测量报告;在测量控制信息中基站通知终端,对于非授权载波的评估时间窗长度为260ms。UE接收到该测量任务和配置后,对测量对象f3执行RRM测量和相关评估。
图12是根据本发明可选实施例三的触发非授权载波测量报告的方法示意图,如图12所示,T2时,终端测量到小区3的信号质量,经过层三处理后低于Thresh-1,不满足A8的触发条件,不进行RRM相关事件评估准入处理。
T3时,终端测量到小区3的信号质量,经过层三处理后高于Thresh-1,是第一个满足事件触发条件的有效测量结果,于是进入RRM相关事件评估准入处理。由于是关于A8事件的测量评估任务,于是启动评估时间窗,并记录下时间T3。
T4时,终端再次测量到小区3的信号质量,经过层三处理后仍然高于Thresh-1,记录下时间T4,继续RRM事件评估,T4与T3时间差是30ms。
如果此时的小区3的信号质量,经过层三处理后低于Thresh-1,则进入RRM相关事件评估准出/退出处理,随即立刻停止评估时间窗,从而不会触发测量报告,本实施例结束。下面处理的原则类似,不再重复。
T5时,终端测量到小区3的信号质量,经过层三处理后高于Thresh-1,记录下时间T5,继续RRM事件评估,T5与T4时间差是50ms。
T6时,终端测量到小区3的信号质量,经过层三处理后高于Thresh-1,记录下时间T6,继续RRM事件评估,T6与T5时间差是55ms。
T7时,终端测量到小区3的信号质量,经过层三处理后高于Thresh-1,记录下时间T7,继续RRM事件评估,T7与T6时间差是35ms。
T8时,终端测量到小区3的信号质量,经过层三处理后仍然高于Thresh-1,记录下时间T8,继续RRM事件评估,T8与T7时间差是70ms。
稍后,评估时间窗在(T3+260ms)处结束,所有收到的小区3的有效信号质量,经过层三处理后都高于Thresh-1,一共收到6个有效测量结果,有5个时间差,分别为30ms,50ms,55ms,35ms,70ms,方差值为257.5ms,小于指定门限300ms,小区3满足事件准入条件持续评估时间窗时间,因此可以触发测量报告比如A8事件,并且还可以把上述时间差的方差值257.5ms上报给基站。否则如果上述时间差的方差值高于比较门限300ms,则不可以触发测量报告比如A8事件。
实施例四
如图1所示,网络侧发送含有测量控制信息的RRC消息给UE,其中包含一个测量任务是:搜寻测量某邻区信号的质量优于当前主服务小区的质量某个偏移门限Offset,从而触发A3事件,此处为了方便描述,设定偏移offset为0,测量对象为非授权载波频点f3。另外,在测量控制信息中基站还通知终端,如果测量有效结果的时间差值,低于或等于55ms的低延时采样个数大于个数门限3,才能触发含有A3事件的测量报告;在测量控制信息中基站通知终端,对于非授权载波的评估时间窗长度默认等于TTT250ms。UE接收到该测量任务和配置后,对测量对象f3执行RRM测量和相关评估。
图13是根据本发明可选实施例四的示意图,如图13所示,T2时,终端测量到小区3的信号质量,经过层三处理后低于当前主服务小区的信号质量,不满足A3的触发条件,不进行RRM相关事件评估准入处理。
T3时,终端测量到小区3的信号质量,经过层三处理后高于当前主服务小区的信号质量,是第一个满足事件触发条件的有效测量结果,于是进入RRM相关事件评估准入处理。由于小区3是部署在非授权载波上的,于是启动评估时间窗,并记录下时间T3。
T4时,终端测量到小区3的信号质量,经过层三处理后仍然高于当前主服务小区的信号质量,记录下时间T4,继续RRM事件评估,T4与T3时间差是36ms。
T5时,终端测量到小区3的信号质量,经过层三处理后高于当前主服务小区的信号质量,记录下时间T5,继续RRM事件评估,T5与T4时间差是38ms。
T6时,终端测量到小区3的信号质量,经过层三处理后高于当前主服务小区的信号质量,记录下时间T6,继续RRM事件评估,T6与T5时间差是55ms。
T7时,终端测量到小区3的信号质量,经过层三处理后高于当前主服务小区的信号质量,记录下时间T7,继续RRM事件评估,T7与T6时间差是52ms。
T8时,终端测量到小区3的信号质量,经过层三处理后高于当前主服务小区的信号质量,记录下时间T8,继续RRM事件评估,T8与T7时间差是62ms。
此时,评估时间窗在(T3+250ms)处结束,所有收到的小区3的信号质量,经过层三处理后高于当前主服务小区的信号质量,一共收到6个有效测量结果,有5个时间差,分别为36ms,38ms,55ms,52ms,62ms,低于或等于比较门限55ms的低延时采样个数为4>个数门限3,因此可以触发测量报告比如A3事件,上报给基站。否则如果上述时间差值低于或等于比较门限55ms的低延时采样总个数小于或等于个数门限3个,则不可以触发测量报告比如A3事件。
本实施例中涉及到的移动测量事件可以包括以下至少之一:同频触发事件、异频触发事件、异系统触发事件。
本发明实施例并不限定在非授权载波场景适用,其他场景也可以借用。
本发明的实施例还提供了一种存储介质。可选地,在本实施例中,上述存储介质可以被设置为存储用于执行以下步骤的程序代码:
S1,终端在接收到网络侧发送携带有测量控制信息的消息之后,对非授权载波进行测量,其中,测量控制信息用于指示终端对指定的非授权载波上的多个非授权目标小区进行测量;
S2,终端从接收到满足无线资源管理RRM时间评估的准入条件的测量 结果时开始启动评估时间窗,并在评估时间窗内依次获取满足准入条件的多个测量结果的时间值,直到测量结果不满足准入条件或评估时间窗的时间结束;
S3,终端将多个测量结果的时间值作为预设规则的输入参数得到输出结果,并依据输出结果确定是否触发上报含有移动测量事件的测量报告的操作。
可选地,本实施例中的示例可以参考上述实施例及可选实施方式中所描述的示例,本实施例在此不再赘述。
显然,本领域的技术人员应该明白,上述的本发明的模块或步骤可以用通用的计算装置来实现,它们可以集中在单个的计算装置上,或者分布在多个计算装置所组成的网络上,可选地,它们可以用计算装置可执行的程序代码来实现,从而,可以将它们存储在存储装置中由计算装置来执行,并且在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤,或者将它们分别制作成集成电路模块,或者将它们中的多个模块或步骤制作成单个集成电路模块来实现。这样,本发明实施例不限制于任何特定的硬件和软件结合。
以上所述仅为本发明的可选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有多种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。
工业实用性
通过本发明实施例,解决了相关技术中按照LTE系统的已有机制来进行测量报告的触发,对于非授权载波而言会引起测量报告的误触发,或者测量报告的不触发的问题,进而到达了提高用户体验的效果。

Claims (14)

  1. 一种非授权载波测量报告的处理方法,包括:
    终端在接收到网络侧发送携带有测量控制信息的消息之后,对非授权载波进行测量,其中,所述测量控制信息用于指示所述终端对指定的非授权载波上的多个非授权目标小区进行测量;
    所述终端从接收到满足无线资源管理RRM时间评估的准入条件的测量结果时开始启动评估时间窗,并在评估时间窗内依次获取满足所述准入条件的多个测量结果的时间值,直到所述测量结果不满足所述准入条件或所述评估时间窗的时间结束;
    所述终端将所述多个测量结果的时间值作为预设规则的输入参数得到输出结果,并依据所述输出结果确定是否触发上报含有移动测量事件的所述测量报告的操作。
  2. 根据权利要求1所述的方法,其中,所述终端将所述多个测量结果的时间值作为预设规则的输入参数得到输出结果的方式包括以下至少之一:
    所述终端计算所述多个测量结果的时间值中相邻两个时间值之间的多个第一时间差值;并计算所述多个第一时间差值的平均值;
    所述终端计算所述多个测量结果的时间值中相邻两个时间值之间的多个第二时间差值,并计算所述多个第二时间差值的方差值;
    所述终端计算所述多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定所述多个第三时间差值中小于或等于预设阈值的低延时采样数量;
    所述终端计算所述多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定所述第三时间差值是否都小于或等于所述预设阈值。
  3. 根据权利要求2所述的方法,其中,所述终端依据所述输出结果确定是否触发上报含有移动测量事件的测量报告的操作包括:
    所述终端判断所述平均值是否小于或等于第一门限值;
    在判断结果为是时,所述终端触发上报所述测量报告的操作;
    在判断结果为否时,所述终端禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,在判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,所述终端在上报所述测量报告的同时,上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
  4. 根据权利要求2所述的方法,其中,所述终端依据所述输出结果确定是否触发上报含有移动测量事件的测量报告的操作包括:
    所述终端判断所述方差值是否小于或等于第二门限值;
    在判断结果为是时,所述终端触发上报所述测量报告的操作;
    在判断结果为否时,所述终端禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,在判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,所述终端在上报所述测量报告的同时,并上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
  5. 根据权利要求2所述的方法,其中,所述终端依据所述输出结果确定是否触发上报含有移动测量事件的测量报告的操作包括:
    所述终端判断所述低延时采样数量是否大于第三门限值;
    在判断结果为是时,所述终端触发上报所述测量报告的操作;
    在判断结果为否时,所述终端禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,在判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,所述终端在上报所述测量报告的同时,并上报用于指示所述移动测量事件不可靠测量事件的指示信息。
  6. 根据权利要求2所述的方法,其中,所述终端依据所述输出结果确定是否触发上报含有移动测量事件的测量报告的操作包括:
    在所述第三时间差值都小于或等于所述预设阈值时,所述终端触发上报所述测量报告的操作;
    在所述第三时间差值不都小于或等于所述预设阈值时,所述终端禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,在所述第三时间差值不都小于或等于所述预设阈值,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,所述终端在上报所述测量报告的同时,上报用于指示所 述移动测量事件不可靠测量事件的指示信息。
  7. 根据权利要求1至6任一项所述的方法,其中,所述评估时间窗为网络侧为所述终端预先配置的时间长度,或为无线资源管理RRM测量配置中的触发时间长度TTT。
  8. 一种非授权载波测量报告的处理装置,应用于终端侧,包括:
    测量模块,设置为:在接收到网络侧发送携带有测量控制信息的消息之后,对非授权载波进行测量,其中,所述测量控制信息用于指示所述终端对指定的非授权载波上的多个非授权目标小区进行测量;
    获取模块,设置为:从接收到满足无线资源管理RRM时间评估的准入条件的测量结果时开始启动评估时间窗,并在评估时间窗内依次获取满足所述准入条件的多个测量结果的时间值,直到所述测量结果不满足所述准入条件或所述评估时间窗的时间结束;
    处理模块,设置为:将所述多个测量结果的时间值作为预设规则的输入参数得到输出结果,并依据所述输出结果确定是否触发上报含有移动测量事件的所述测量报告的操作。
  9. 根据权利要求8所述的装置,其中,所述处理模块包括以下至少之一:
    第一计算单元,设置为:所述终端计算所述多个测量结果的时间值中相邻两个时间值之间的多个第一时间差值,并计算所述多个第一时间差值的平均值;
    第二计算单元,设置为:计算所述多个测量结果的时间值中相邻两个时间值之间的多个第二时间差值,并计算所述多个第二时间差值的方差值;
    第三计算单元,设置为:计算所述多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定所述多个第三时间差值中小于或等于预设阈值的低延时采样数量;
    第四计算单元,设置为:计算所述多个测量结果的时间值中相邻两个时间值之间的多个第三时间差值,并确定所述第三时间差值是否都小于或等于所述预设阈值。
  10. 根据权利要求9所述的装置,其中,所述处理模块还包括:
    第一判断单元,设置为:判断所述平均值是否小于或等于第一门限值;
    第一触发单元,设置为:在第一判断单元判断结果为是时,触发上报所述测量报告的操作;
    第一禁止单元,设置为:在第一判断单元判断结果为否时,禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,第一上报单元,设置为:在第一判断单元判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,在上报所述测量报告的同时上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
  11. 根据权利要求9所述的装置,其中,所述处理模块还包括:
    第二判断单元,设置为:判断所述方差值是否小于或等于第二门限值;
    第二触发单元,设置为:在第二判断单元判断结果为是时,触发上报所述测量报告的操作;
    第二禁止单元,设置为:在第二判断单元判断结果为否时,禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,第二上报单元,设置为:在第二判断单元判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,在上报所述测量报告的同时上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
  12. 根据权利要求9所述的装置,其中,所述处理模块还包括:
    第三判断单元,设置为:判断所述低延时采样数量是否大于第三门限值;
    第三触发单元,设置为:在第三判断单元判断结果为是时,触发上报所述测量报告的操作;
    第三禁止单元,设置为:在第三判断单元判断结果为否时,禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,第三上报单元,设置为:在第三判断单元判断结果为否,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,在上报所述测量报告的同时,上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
  13. 根据权利要求9所述的装置,其中,所述处理模块包括:
    第四触发单元,设置为:在所述第三时间差值都小于或等于所述预设阈值时,触发上报所述测量报告的操作;
    第四禁止单元,设置为:在所述第三时间差值不都小于或等于所述预设阈值时,禁止触发上报所述测量报告的操作或停止所述评估时间窗;或,第四上报单元,设置为:在所述第三时间差值不都小于或等于所述预设阈值,且网络侧仍然指示所述终端触发上报所述测量报告的操作时,在上报所述测量报告的同时上报用于指示所述移动测量事件为不可靠测量事件的指示信息。
  14. 根据权利要求8至13任一项所述的装置,其中,所述评估时间窗为网络侧为所述终端预先配置的时间长度,或为无线资源管理RRM测量配置中的触发时间长度TTT。
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