CN101730135B - Mobile management methods, user equipment and evolved network basestation - Google Patents

Mobile management methods, user equipment and evolved network basestation Download PDF

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Publication number
CN101730135B
CN101730135B CN2008102256445A CN200810225644A CN101730135B CN 101730135 B CN101730135 B CN 101730135B CN 2008102256445 A CN2008102256445 A CN 2008102256445A CN 200810225644 A CN200810225644 A CN 200810225644A CN 101730135 B CN101730135 B CN 101730135B
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measurement
bias amount
spacing bias
interval
measure
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CN101730135A (en
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高闻
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Huawei Technologies Co Ltd
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Huawei Technologies Co Ltd
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Priority to PCT/CN2009/074400 priority patent/WO2010048851A1/en
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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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • H04W76/28Discontinuous transmission [DTX]; Discontinuous reception [DRX]

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  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

The embodiment of the invention relates to mobile management methods, user equipment and an evolved network basestation. One mobile management method comprises the following steps: receiving measurement and configuration parameters which comprise a first measurement interval offset, and when the discontinuous reception (DRX) duration being in the measurement interval determined according to the first measurement interval offset, measuring in the measurement interval determined according to a second measurement interval offset. The other mobile management method comprises the following steps: receiving measurement and configuration parameters which comprise a first measurement interval offset, and when the DRX duration being in the measurement interval determined according to the first measurement interval offset, prolonging the DRX duration and measuring in the measurement interval determined according to the first measurement interval offset, wherein the length of the DRX duration is between the length of the measurement interval and the length of the sleeping time. The embodiment of the invention can ensure the normal service data scheduling in the DRX duration and avoid the loss of service data.

Description

Mobility measurements method and subscriber equipment, evolution network base station
Technical field
The embodiment of the invention relates to the communications field, relates in particular to mobility measurements method and subscriber equipment, evolution network base station.
Background technology
At Long Term Evolution (Long Term Evolution, LTE) in the system, mobility measurements mainly is in order better to support subscriber equipment (User Equipment, mobility UE), switch in time and the residential quarter gravity treatment, guarantee reliability and the continuity of customer service.In mobility measurements is divided into frequently, frequently between and system's measurements.UE in frequently, measures, owing in the similar frequency bands of LTE system, can carry out the normal data transmitting-receiving simultaneously and measure; And between frequency and system's measurements, UE generally needs frequency hopping to carry out when measuring, therefore can't carry out normal data transmit-receive simultaneously, for discriminating measurement and regular traffic, take into account measurement quality and minimizing simultaneously to the influence of regular traffic, network side is allocating and measuring interval (measurement gap) in measuring configuration parameter, is used between frequency and system's measurements.UE measures in measuring at interval, and this moment, normal data transmit-receive can stop.In the LTE system, the measurement gap length is 6ms, and the cycle has two kinds: 40ms and 80ms.Simultaneously, also disposed a parameter of measuring spacing bias amount (gapOffset) and arranged to measure the original position in measuring period at interval, UE carries out mobility measurements according to this measurement spacing bias amount.
In the LTE system, UE utilizes discontinuous reception (Discontinuous Reception, DRX) pattern is carried out power saving, according to DRX mechanism of the prior art, lasting (on duration) time monitoring Physical Downlink Control Channel (Physical Downlink ControlChannel that UE begins at DRX cycle, PDCCH), if there is the scheduling of evolution network base station (eNB), then carry out the transmitting-receiving of business datum according to this scheduling, continue to monitor PDDCH simultaneously, if the scheduling of not receiving eNB in the duration at DRX, UE then enters sleep (sleep) time, namely close transceiver, be in power down mode.ENB can not carry out data dispatch to UE during this period, until the next DRX duration.
The inventor finds in implementing process of the present invention: DRX cycle of the prior art can be 32ms, 64ms, 128ms and 256ms etc., can't mate fully with measurement gap periods (40ms or 80ms).If the DRX duration just may conflict at interval with measurement, that is: the DRX duration is in fully and measures in the interval, then owing to UE in measurement does not at interval monitor that PDCCH carries out the scheduling of data, makes the business datum of eNB in time not send even to lose.
Summary of the invention
The embodiment of the invention provides mobility measurements method and subscriber equipment, evolution network base station, is in the problem that business datum transmission when measuring at interval is untimely even lose fully in order to solve when the DRX duration.
The embodiment of the invention provides a kind of mobility measurements method, comprising:
Receive and measure configuration parameter, described measurement configuration parameter comprises that first measures the spacing bias amount;
When the discontinuous reception DRX duration is in the measurement of determining according to the described first measurement spacing bias amount at interval, in the measurement interval of determining according to the second measurement spacing bias amount, measure.
The embodiment of the invention provides another kind of mobility measurements method, comprising:
Receive and measure configuration parameter, described measurement configuration parameter comprises that first measures the spacing bias amount;
When the discontinuous reception DRX duration is in the measurement of determining according to the described first measurement spacing bias amount at interval, prolongs the described DRX duration, and in the measurement interval of determining according to the described first measurement spacing bias amount, measure; The prolongation amount of described DRX duration is being measured between gap length and the DRX length length of one's sleep.
The embodiment of the invention provides a kind of subscriber equipment, comprising:
Receiver module is used for receiving and measures configuration parameter, and described measurement configuration parameter comprises that first measures the spacing bias amount;
Detection module is used for judging that whether the discontinuous reception DRX duration measuring in the measurement interval that the spacing bias amount determines, if then trigger measurement module according to first;
Measurement module is used for when being subjected to the triggering of described detection module, measures in the measurement of determining according to the second measurement spacing bias amount at interval.
The embodiment of the invention provides a kind of evolution network base station, comprising:
Sending module is used for sending and measures configuration parameter, and described measurement configuration parameter comprises that first measures spacing bias amount and the second measurement spacing bias amount; The definite measurement interval of spacing bias amount is measured in same measurement gap periods in the measurement interval and described second that the described first measurement spacing bias amount is determined, described first minimum value of measuring the difference of spacing bias amount and the second measurement spacing bias amount is the measurement gap length;
Receiver module is used for receiving the measurement report that reports.
The embodiment of the invention provides another kind of subscriber equipment, comprising:
Receiver module is used for receiving and measures configuration parameter, and described measurement configuration parameter comprises that first measures the spacing bias amount;
Detection module is used for judging that whether the discontinuous reception DRX duration measuring in the measurement interval that the spacing bias amount determines according to first, if, trigger control module then;
Control module is used for prolonging the described DRX duration and triggering measurement module when being subjected to the triggering of described detection module, and the prolongation amount of described DRX duration is being measured between gap length and the DRX length length of one's sleep;
Measurement module is used for when being subjected to the triggering of described control module, measures in the measurement of determining according to the described first measurement spacing bias amount at interval.
In the embodiment of the invention, when the DRX duration when measuring in the measurement at interval that the spacing bias amount determines according to first, can guarantee the dispatching services data normally in the duration at DRX, avoided losing of business datum.
Description of drawings
Fig. 1 is the flow chart of a kind of mobility measurements method of the present invention embodiment one;
Fig. 2 is the flow chart of a kind of mobility measurements method of the present invention embodiment two;
Fig. 3 is the flow chart of a kind of mobility measurements method of the present invention embodiment three;
Fig. 4 is the sequential schematic diagram of a kind of mobility measurements method of the present invention embodiment three;
Fig. 5 is the flow chart of the another kind of mobility measurements method of the present invention embodiment one;
Fig. 6 is the flow chart of the another kind of mobility measurements method of the present invention embodiment two;
Fig. 7 is the sequential schematic diagram of the another kind of mobility measurements method of the present invention embodiment two;
Fig. 8 is the structural representation of a kind of subscriber equipment embodiment of the present invention;
Fig. 9 is the structural representation of a kind of evolution network base station embodiment of the present invention;
Figure 10 is the structural representation of the another kind of subscriber equipment embodiment of the present invention.
Embodiment
Below by drawings and Examples, the technical scheme of the embodiment of the invention is described in further detail.
As shown in Figure 1, the flow chart for a kind of mobility measurements method of the present invention embodiment one specifically comprises the steps:
Configuration parameter is measured in step 101, reception, and this measurement configuration parameter comprises that first measures the spacing bias amount;
Step 102, when the DRX duration when measuring in the measurement at interval that the spacing bias amount determines according to first, measure in the measurement interval that the spacing bias amount determines second and to measure.
In present embodiment and follow-up each embodiment, the DRX duration refers to specifically that in measuring the interval start time point of DRX duration is no earlier than the start time point of measuring the interval, and the concluding time of DRX duration point is not later than the concluding time point of measuring the interval.For ease of describing, hereinafter the situation of this DRX duration in measuring at interval abbreviated as to measure at interval and conflict with the DRX duration.
Present embodiment is when the DRX duration is in the measurement of determining according to the first measurement spacing bias amount at interval, measuring the definite measurement of spacing bias amount according to second measures at interval, make like this to measure at interval and can stagger with the DRX duration, guarantee the dispatching services data normally in the duration at DRX, avoided losing of business datum.
As shown in Figure 2, be the flow chart of a kind of mobility measurements method of the present invention embodiment two, it is that example is introduced that present embodiment carries out mobility measurements with UE, specifically comprises the steps:
Step 201, UE receive the first measurement spacing bias amount and second that comprises of eNB transmission and measure the measurement configuration parameter of spacing bias amount;
Wherein carry the signaling of this measurement configuration parameter and can control (Radio ResourceControl for Radio Resource, RRC) signaling, for example, this measurement configuration parameter is included in the MeasurementConfiguration information unit of RRC signaling, this MeasurementConfiguration information unit further comprises for allocating and measuring MeasGapConfig information unit at interval, (gap1) and cycle are the measurement interval (gap2) of 80ms at interval in the measurement that comprises the cycle in the MeasGapConfig information unit and be 40ms, and each measures measurement spacing bias amount at interval: first measures the spacing bias amount (also can be called the main spacing bias amount of measuring, be primary gapOffset) and the second measurement spacing bias amount (also can be called auxilliary spacing bias amount, i.e. the secondary gapOffset of measuring).
In this step, first measures the spacing bias amount and second parameter value of measuring the spacing bias amount can satisfy: measure measurement that the spacing bias amount determines at interval and measure measurement that the spacing bias amount determines at interval in same measurement gap periods according to second according to first, and the minimum value of both differences is for measuring gap length.That is to say, above-mentioned two parameter values of measuring the spacing bias amount should draw back in measuring gap periods as far as possible, particularly, these two minimum values of measuring the difference of spacing bias amount can be for measuring gap length, and the maximum of this difference can be the maximum that can obtain in same measurement gap periods.For example: the measurement gap periods is 40ms, and the measurement gap length is 6ms, and the first measurement spacing bias amount is 21, and then second span of measuring the spacing bias amount can be 0-15 and 27-34.
Step 202, UE judge that whether the DRX duration measuring in the measurement at interval that the spacing bias amount determines, if then execution in step 204 according to first; Otherwise execution in step 203;
Step 203, UE measure in the measurement of determining according to the first measurement spacing bias amount at interval;
Concrete, UE judges to measure in according to the definite measurement at interval of the first measurement spacing bias amount by detection computations and can not cause the DRX duration in the measurement interval that the first measurement spacing bias amount is determined, then utilizes first measurement to measure at interval.
This step is applicable to and will measures the length of one's sleep of arranged spaced at UE, the situation that the cycle of DRX and measurement gap periods match each other, also be applicable to the cycle of DRX and measure gap periods and do not match, but utilize the first measurement spacing bias amount to measure in the most of the time, make and measure at interval and not afoul situation of DRX duration.
Step 204, UE measure in the measurement of determining according to the second measurement spacing bias amount at interval.
In this step, when the DRX duration is in the measurement of determining according to the first measurement spacing bias amount at interval, in the measurement interval of determining according to the second measurement spacing bias amount, measures and to avoid conflict, make measurement stagger with the DRX duration at interval.
In the present embodiment, after UE measures, can generate measurement report and send to eNB.
In the present embodiment, eNB provides two measurement configuration parameters of measuring the spacing bias amount for UE, make UE judge the DRX duration when measuring in the definite measurement at interval of spacing bias amount according to first, in the measurement at interval that the second measurement spacing bias amount is determined, measure, measure at interval like this and can stagger with the DRX duration, guarantee the dispatching services data normally in the duration at DRX, avoided losing of business datum.
As shown in Figure 3, be the flow chart of a kind of mobility measurements method of the present invention embodiment three, as shown in Figure 4, be the sequential schematic diagram of a kind of mobility measurements method of the present invention embodiment three, it is that example is introduced that present embodiment carries out mobility measurements with UE, specifically may further comprise the steps:
Step 301, UE receive the measurement configuration parameter that comprises the first measurement spacing bias amount that eNB sends;
The signaling of wherein carrying this measurement configuration parameter can be the RRC signaling, for example, this measurement configuration parameter is included in the MeasurementConfiguration information unit of RRC signaling, this MeasurementConfiguration information unit further comprises for allocating and measuring MeasGapConfig information unit at interval, the measurement that comprises the cycle in the MeasGapConfig information unit and be 40ms at interval (gap1) and cycle be the measurement (gap2) at interval of 80ms, and each measures the first measurement spacing bias amount at interval.
Step 302, UE judge that whether the DRX duration measuring in the measurement at interval that the spacing bias amount determines, if then execution in step 304 according to first; Otherwise execution in step 303;
Step 303, UE measure in the definite measurement at interval of spacing bias amount first and measure;
If UE judges by detection computations when utilizing first to measure the spacing bias amount and measure, and can not cause the DRX duration in measuring at interval, then measures in the measurement of determining at interval at interval first and measures.
This step is applicable to and will measures the length of one's sleep of arranged spaced at UE, the situation that the cycle of DRX and measurement gap periods match each other, also be applicable to simultaneously the cycle of DRX and measure gap periods and do not match, but utilize the first measurement spacing bias amount to measure in the most of the time, make and measure at interval and not afoul situation of DRX duration.
Step 304, in measuring the measurement gap periods at place at interval, will measure at interval and be offset an above Transmission Time Interval (TTI) forward or backward, determine the second measurement spacing bias amount;
Step 305, measure measuring in the measurement at interval that the spacing bias amount determines according to second.
Further, UE can generate measurement report and send to eNB after measure.
Be illustrated in figure 4 as the process of above-mentioned steps 304 for example, will measure at interval and be displaced to B place, position by position A, make to measure at interval and can stagger with the DRX duration.Wherein, will measure at interval and be offset an above Transmission Time Interval forward or backward, mean that measuring the spacing bias amount changes, at this, the first time span sum of measuring spacing bias amount and skew be measured the spacing bias amount as second.The number of the TTI of skew can be determined according to measuring at interval by UE and eNB, particularly, measuring measurement that the spacing bias amount determines at interval and measure measurement that the spacing bias amount determines according to second according to first at interval should be in same measurement gap periods, and the minimum value of both differences should be to measure gap length.Therefore, the minimum value of the time span of skew can be for measuring gap length, and maximum can be the maximum that can obtain in same measurement gap periods.The time span that the TTI number of skew equals to be offset and the merchant of TTI length.For example: the measurement gap periods is 40ms, and the measurement gap length is 6ms, and TTI length is 2ms, and the first measurement spacing bias amount is 21, and then the span of Pian Yi time span is 6ms-21ms, and the span of the TTI number of skew is 3-10.
In the present embodiment, UE is judging the DRX duration when measuring in the definite measurement at interval of spacing bias amount according to first, in this measures the measurement gap periods at place, interval, to measure and be offset an above TTI at interval forward or backward, measure at interval like this and can stagger with the DRX duration, guarantee the dispatching services data normally in the duration at DRX, avoided losing of business datum.
As shown in Figure 5, the flow chart for the another kind of mobility measurements method of the present invention embodiment one specifically comprises the steps:
Configuration parameter is measured in step 401, reception, and this measurement configuration parameter comprises that first measures the spacing bias amount;
Step 402, when the DRX duration when measuring in the measurement at interval that the spacing bias amount determines according to first, prolong the DRX duration, and measure in the measurement interval that the spacing bias amount determines first and to measure; The prolongation amount of this DRX duration is being measured between gap length and the DRX length length of one's sleep.
Present embodiment is being judged the DRX duration when measuring in the definite measurement at interval of spacing bias amount according to first, prolong the DRX duration, monitor PDCCH and dispatching services data normally in during making that UE can be after prolongation, avoided losing of business datum.
As shown in Figure 6, be the flow chart of the another kind of mobility measurements method of the present invention embodiment two, as shown in Figure 7, be the sequential schematic diagram of the another kind of mobility measurements method of the present invention embodiment two, it is that example is introduced that present embodiment carries out mobility measurements with the UE of eNB, specifically comprises the steps:
Step 501, UE receive the measurement configuration parameter that comprises the first measurement spacing bias amount that eNB sends;
The signaling of wherein carrying this measurement configuration parameter can be the RRC signaling, for example, this measurement configuration parameter is included in the MeasurementConfiguration information unit of RRC signaling, this MeasurementConfiguration information unit further comprises for allocating and measuring MeasGapConfig information unit at interval, the measurement that comprises the cycle in the MeasGapConfig information unit and be 40ms at interval (gap1) and cycle be the measurement (gap2) at interval of 80ms, and each measures the first measurement spacing bias amount at interval.
Step 502, UE judge that whether the DRX duration measuring in the measurement at interval that the spacing bias amount determines, if then execution in step 503 according to first; Otherwise execution in step 504;
Step 503, prolong this DRX duration, the prolongation amount of this DRX duration is being measured between gap length and the DRX length length of one's sleep;
Step 504, UE measure in the measurement of determining according to the first measurement spacing bias amount at interval;
Further, UE can generate measurement report and send to eNB after measure.
Be illustrated in figure 7 as the process of above-mentioned steps 503 for example, wherein, DRX in the duration solid line partly represent the former DRX duration, dotted portion is represented DRX duration of prolonging.Then the prolongation amount of DRX duration can be for measuring gap length, and the DRX duration length after namely prolonging is former DRX duration length and measures the gap length sum.For example, the measurement gap length is 6ms, and the DRX duration length after then prolonging equals former DRX duration length+6ms; The prolongation amount of DRX duration also can be greater than measuring gap length, and the DRX duration after the prolongation is got final product in DRX cycle, and namely the maximum of the prolongation amount of DRX duration is the DRX length length of one's sleep.
In the present embodiment, judging the DRX duration when measuring in the definite measurement at interval of spacing bias amount according to first, prolong the DRX duration, make that UE can be after prolongation during in monitor also dispatching services data normally of PDCCH, avoided losing of business datum.
As shown in Figure 8, be the structural representation of a kind of subscriber equipment embodiment of the present invention, present embodiment specifically comprises: receiver module 11, detection module 12 and measurement module 13; Wherein, receiver module 11 is used for receiving the measurement configuration parameter, this measurement configuration parameter comprises that first measures the spacing bias amount, detection module 12 is used for judging that whether the DRX duration measuring in the measurement interval that the spacing bias amount determines according to first, if, then trigger measurement module 13, measurement module 13 is used for when being subjected to the triggering of detection module 12, measures in the definite measurement at interval of spacing bias amount second and measures.
Further, receiver module 11 can also be used for receiving the second measurement spacing bias amount in the present embodiment.
Further, measurement module 13 can also be used for when being subjected to the triggering of detection module 12, in the measuring period of measuring the place, interval, be offset more than one TTI forward or backward as the second measurement spacing bias amount with measuring the interval, measure the definite measurement of spacing bias amount according to second and measure at interval.Measurement module 13 can also be used for according to measuring the number of the TTI of definite skew at interval.Wherein, the time span that the TTI number of skew equals to be offset and the merchant of TTI length, the minimum value of the time span of skew can be for measuring gap length, and maximum can be the maximum that can obtain in same measurement gap periods.
Present embodiment can also comprise reporting module 14, and this reporting module 14 can report according to second to eNB and measure the measurement report that the spacing bias amount measures.
Present embodiment UE receives or determines that second measures the spacing bias amount, make and judging the DRX duration when measuring in the definite measurement at interval of spacing bias amount according to first, utilize the second measurement spacing bias amount to measure, measure at interval like this and can stagger with the DRX duration, guarantee the dispatching services data normally in the duration at DRX, avoided losing of business datum.
As shown in Figure 9, be the structural representation of a kind of evolution network base station embodiment of the present invention, present embodiment specifically comprises: sending module 21 and receiver module 22; Wherein sending module 21 will comprise that the first measurement configuration parameter of measuring spacing bias amount and the second measurement spacing bias amount sends to UE, and receiver module 22 receives the measurement report that UE report.Wherein, first measures the spacing bias amount and second parameter value of measuring the spacing bias amount can satisfy: measure measurement that the spacing bias amount determines at interval and measure measurement that the spacing bias amount determines at interval in same measurement gap periods according to second according to first, and the minimum value of both differences is for measuring gap length.That is to say, above-mentioned two parameter values of measuring the spacing bias amount should draw back in measuring gap periods as far as possible, particularly, these two minimum values of measuring the difference of spacing bias amount can be for measuring gap length, and the maximum of this difference can be the maximum that can obtain in same measurement gap periods.
Present embodiment has increased by one second and has measured the spacing bias amount when measuring configuration, and the measurement that makes UE can utilize this second measurement spacing bias amount to determine is measured at interval.
As shown in figure 10, be the structural representation of the another kind of subscriber equipment embodiment of the present invention, present embodiment specifically comprises: receiver module 41, detection module 42, control module 43 and measurement module 44; Receiver module 41 is used for receiving the measurement configuration parameter that comprises the first measurement spacing bias amount, detection module 42 is used for judging that whether the DRX duration measuring in the measurement interval that the spacing bias amount determines according to first, if, then trigger control module 43, control module 43 is used for when being subjected to the triggering of detection module 42, prolong the DRX duration, and triggering measurement module 44, the prolongation amount of this DRX duration is being measured between gap length and the DRX length length of one's sleep, measurement module 44 is used for when being controlled the triggering of module 43, measures in the measurement at interval that this first measurement spacing bias amount is determined.
Concrete, control module 43 can be notified for the time block of setting the DRX duration, upgrades the DRX duration, and the DRX duration length after the renewal equals former DRX duration length and prolongation amount sum.
Present embodiment can also comprise reporting module 45, and this reporting module 45 can report according to first to eNB and measure the measurement report that the spacing bias amount is measured.
In the present embodiment, detection module 42 is being judged the DRX duration when measuring in the definite measurement at interval of spacing bias amount according to first, control module 43 prolongs the DRX duration, monitor PDCCH and dispatching services data normally in during making that UE can be after prolongation, avoided losing of business datum.
One of ordinary skill in the art will appreciate that: all or part of step that realizes said method embodiment can be finished by the relevant hardware of program command, aforesaid program can be stored in the computer read/write memory medium, this program is when carrying out, execution comprises the step of said method embodiment, and aforesaid storage medium comprises: various media that can be program code stored such as ROM, RAM, magnetic disc or CD.
It should be noted that at last: above embodiment only in order to the technical scheme of the embodiment of the invention to be described, is not intended to limit; Although with reference to previous embodiment the embodiment of the invention is had been described in detail, those of ordinary skill in the art is to be understood that: it still can be made amendment to the technical scheme that aforementioned each embodiment puts down in writing, and perhaps part technical characterictic wherein is equal to replacement; And these modifications or replacement do not make the essence of appropriate technical solution break away from the spirit and scope of each embodiment technical scheme of the embodiment of the invention.

Claims (7)

1. mobility measurements method is characterized in that comprising:
Receive the measurement configuration parameter that evolution network base station sends, described measurement configuration parameter comprises that first measures the spacing bias amount;
When the discontinuous reception DRX duration is in the measurement of determining according to the described first measurement spacing bias amount at interval, in the measurement interval of determining according to the second measurement spacing bias amount, measure;
The definite measurement interval of spacing bias amount is measured in same measurement gap periods in the measurement interval and described second that the described first measurement spacing bias amount is determined, described first minimum value of measuring the difference of spacing bias amount and the second measurement spacing bias amount is the measurement gap length.
2. mobility measurements method according to claim 1 is characterized in that, described measurement configuration parameter comprises that also second measures the spacing bias amount.
3. mobility measurements method according to claim 1 is characterized in that, described according to second measure measure in the measurement at interval that the spacing bias amount determines before, also comprise:
By measuring in the measurement gap periods at the definite place, measurement interval of spacing bias amount described first, measure the definite measurement of spacing bias amount with described first and be offset an above Transmission Time Interval forward or backward at interval, determine that second measures the spacing bias amount.
4. subscriber equipment is characterized in that comprising:
Receiver module is used for receiving the measurement configuration parameter that evolution network base station sends, and described measurement configuration parameter comprises that first measures the spacing bias amount;
Detection module is used for judging that whether the discontinuous reception DRX duration measuring in the measurement interval that the spacing bias amount determines, if then trigger measurement module according to first;
Measurement module is used for when being subjected to the triggering of described detection module, measures in the measurement of determining according to the second measurement spacing bias amount at interval;
The definite measurement interval of spacing bias amount is measured in same measurement gap periods in the measurement interval and described second that the described first measurement spacing bias amount is determined, described first minimum value of measuring the difference of spacing bias amount and the second measurement spacing bias amount is the measurement gap length.
5. subscriber equipment according to claim 4 is characterized in that, described receiver module also is used for receiving second and measures the spacing bias amount.
6. subscriber equipment according to claim 4, it is characterized in that, described measurement module specifically is used for when being subjected to the triggering of described detection module, to measure in the measurement gap periods at the definite place, measurement interval of spacing bias amount described first, measure the definite measurement of spacing bias amount with described first and be offset more than one Transmission Time Interval at interval forward or backward as the second measurement spacing bias amount, in the measurement interval of determining according to the described second measurement spacing bias amount, measure.
7. evolution network base station is characterized in that comprising:
Sending module, be used for sending and measure configuration parameter to subscriber equipment, receive the measurement configuration parameter that evolution network base station sends for described subscriber equipment, and judge that whether the discontinuous reception DRX duration measuring in the measurement at interval that the spacing bias amount determines according to first, if in the measurement of determining according to the second measurement spacing bias amount at interval, measure; Described measurement configuration parameter comprises that first measures spacing bias amount and the second measurement spacing bias amount; The definite measurement interval of spacing bias amount is measured in same measurement gap periods in the measurement interval and described second that the described first measurement spacing bias amount is determined, described first minimum value of measuring the difference of spacing bias amount and the second measurement spacing bias amount is the measurement gap length;
Receiver module is for the measurement report that receives user equipment to report.
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CN102340816A (en) * 2010-07-22 2012-02-01 普天信息技术研究院有限公司 Method for measuring and reporting signal channel
CN102595450B (en) * 2011-01-10 2014-12-24 华为技术有限公司 Confirmation of measuring gap and communication device
US9247472B2 (en) 2011-04-07 2016-01-26 Nokia Technologies Oy Method and apparatus for accommodating discontinuous reception in a handover determination
CN104301928B (en) * 2013-07-19 2018-10-02 中兴通讯股份有限公司 Data transmission restoration methods, terminal and system in LTE network
WO2015042877A1 (en) * 2013-09-27 2015-04-02 华为技术有限公司 Method and apparatus for supporting user equipment to execute task
CN104053239B (en) * 2014-06-27 2018-12-07 电信科学技术研究院 A kind of time-domain resource distribution method and device
JP6719473B2 (en) * 2015-08-21 2020-07-08 株式会社Nttドコモ User equipment, base station, and gap setting method
WO2017166549A1 (en) * 2016-03-31 2017-10-05 Intel IP Corporation Measurement gap configuration
WO2018068258A1 (en) * 2016-10-13 2018-04-19 海能达通信股份有限公司 Group calling service realization method and device based on lte broadband cluster
CN109151922B (en) 2017-06-16 2021-05-14 华为技术有限公司 Measurement method, measurement configuration method and related equipment
CN110971371B (en) * 2018-09-28 2021-08-13 华为技术有限公司 Indication method, device and system
KR20200057235A (en) * 2018-11-16 2020-05-26 삼성전자주식회사 Method for receiving reference signal and electronic device therefor
WO2022027370A1 (en) * 2020-08-05 2022-02-10 华为技术有限公司 Mobility measurement method and apparatus
WO2023207433A1 (en) * 2022-04-29 2023-11-02 Telefonaktiebolaget Lm Ericsson (Publ) Methods and apparatuses for communication in wireless communication system with network power saving feature

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1429031A (en) * 2001-12-24 2003-07-09 华为技术有限公司 Switching method between frequencies

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FI107861B (en) * 1998-08-28 2001-10-15 Nokia Mobile Phones Ltd Neighbor cell measurements for cell reselection
ZA200903764B (en) * 2006-12-20 2010-08-25 Ericsson Telefon Ab L M A method and arrangements for an event triggered DRX cycle adjustment
CN101031152B (en) * 2007-02-07 2010-05-26 重庆重邮信科通信技术有限公司 Method for shortening user-terminal re-selection time delay under empty mode
KR20080084533A (en) * 2007-03-16 2008-09-19 엘지전자 주식회사 A method of data communication in mobile communication system
WO2008126380A1 (en) * 2007-03-30 2008-10-23 Panasonic Corporation Wireless communication terminal apparatus and wireless communication method

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1429031A (en) * 2001-12-24 2003-07-09 华为技术有限公司 Switching method between frequencies

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