CN109511124A - Configuration method, terminal and the base station that method, the terminal of terminal measurement report measure - Google Patents

Configuration method, terminal and the base station that method, the terminal of terminal measurement report measure Download PDF

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Publication number
CN109511124A
CN109511124A CN201710833218.9A CN201710833218A CN109511124A CN 109511124 A CN109511124 A CN 109511124A CN 201710833218 A CN201710833218 A CN 201710833218A CN 109511124 A CN109511124 A CN 109511124A
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China
Prior art keywords
measurement
terminal
measured
cell
frequency point
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CN201710833218.9A
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Chinese (zh)
Inventor
张晓然
徐晓东
胡南
杨光
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China Mobile Communications Group Co Ltd
China Mobile Communications Co Ltd
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China Mobile Communications Group Co Ltd
China Mobile Communications Co Ltd
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Priority to CN201710833218.9A priority Critical patent/CN109511124A/en
Publication of CN109511124A publication Critical patent/CN109511124A/en
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/08Testing, supervising or monitoring using real traffic
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports

Abstract

The present invention provides configuration method, terminal and the base station of a kind of method of terminal measurement report, terminal measurement, this method comprises: terminal reports the Measurement bandwidth ability information of the terminal to base station;The Measurement bandwidth ability information includes: the corresponding Measurement bandwidth ability of multiple frequency ranges or the corresponding Measurement bandwidth ability of multiple frequency ranges;The Measurement bandwidth ability information that terminal reports the terminal to support to base station in the embodiment of the present invention, base station are that metrical information, the measurement resource of optimum use terminal is respectively configured in the terminal of different Measurement bandwidth abilities.

Description

Configuration method, terminal and the base station that method, the terminal of terminal measurement report measure
Technical field
The present invention relates to fields of communication technology, particularly relate to a kind of method of terminal measurement report, the configuration of terminal measurement Method, terminal and base station.
Background technique
It is co-frequency cell that the identical cell cell of center frequency point on same carrier wave is deployed in LTE (long term evolution) system, The center frequency point of synchronization signal and the center frequency point of cell are identical.As shown in Figure 1, cell1 and cell2 are co-frequency cell, cell3 It is alien-frequency district with cell1/cell2.
From the point of view of terminal UE side, it is assumed that cell1 is serving cell, since the center frequency point of cell2 and cell1 is identical, UE It does not need to be the readjustment retuning on radio frequency when measuring cell2, belongs to common frequency measurement;Due to cell3's and cell2 Center frequency point is different, and UE needs to do the readjustment on radio frequency when measuring cell3, and the center frequency point for being adjusted to cell3 is enterprising Row measurement, is consequently belonging to different-frequency measure.
Cell is corresponded when measuring configuration for UE by the frequency point for as unit of frequency point, measuring target and measurement, often There are multiple cells under a frequency point.
Synchronization signal very flexibly can be no longer confined in the center frequency point of cell in the transmission of frequency domain position in 5G, The frequency domain position of even intra-frequency cells, the synchronization signal of possible each cell is also different, as shown in Fig. 2, cell1, cell2 It is identical with the center of housing estate frequency point of cell3, but the center frequency point of its respective synchronization signal is different.
In 5G system, since maximum system bandwidth can be 400MHz, it may occur that base station ability is greater than terminal The case where ability.Such as base station side supports that still UE only supports 100MHz to 400MHz.It eats dishes without rice or wine to introduce bandwidth in NR simultaneously The concept of part (fractional bandwidth), such as UE support the bandwidth of maximum 100MHz, but UE is there is no so much data at this time, because The considerations of this is for economize on electricity, UE is only received in 20MHz bandwidth.Therefore in order to reduce UE power consumption and complexity, for branch The UE for holding 100MHz maximum bandwidth may only support the bandwidth of maximum 20MHz when measurement.
As shown in figure 3, the synchronization signal of cell2 and cell3 is in the Measurement bandwidth of UE, thus UE to cell2 and The measurement of cell3 belongs to different-frequency measure.As shown in figure 4, the synchronization signal of cell2 is in UE Measurement bandwidth, so to cell2 Measurement belong to common frequency measurement, and the synchronization signal of cell3 belongs to different-frequency measure not in UE Measurement bandwidth.
It is therefore found that the attribute that the UE of different Measurement bandwidth abilities may see is different for the same cell, That is co-frequency cell or alien-frequency district.
Common frequency measurement and different-frequency measure is maximum in UE measurement behavior is not both: different-frequency measure needs UE to adjust frequency point It is measured on to corresponding frequency point;And common frequency measurement does not need the adjustment of frequency point, UE can receive processing to from clothes simultaneously The signal for the cell and adjacent area of being engaged in.
Target is measured in LTE and frequency point is one-to-one relationship, but as described above, a frequency point may be right in 5G Multiple measurement targets are answered, and also can be different according to the configuration that UE measures target.Still above-mentioned measurement is supported to match without mechanism at present Set method.
Summary of the invention
The purpose of the present invention is to provide a kind of method of terminal measurement report, terminal measure configuration method, terminal and Base station, to solve to cause existing measuring configuration method that can not be applicable in since the Measurement bandwidth ability of terminal in 5G system is variable Problem.
To solve the above-mentioned problems, the embodiment of the present invention provides a kind of method of terminal measurement report, comprising:
Terminal reports the Measurement bandwidth ability information of the terminal to base station;The Measurement bandwidth ability information includes: more A corresponding Measurement bandwidth ability of frequency range or the corresponding Measurement bandwidth ability of multiple frequency ranges.
Wherein, the method also includes:
Receive the metrical information that base station is terminal configuration;The metrical information includes: one or more measurement targets;It is described Measuring target includes one or more of following information: target's center's frequency point of one or more cells to be measured, one or The Physical Cell Identifier of multiple cells to be measured, the center frequency point of the synchronization signal of one or more cell to be measured and end Measurement interval instruction information when end measures one or more of cells to be measured;
The cell to be measured is measured according to the metrical information.
Wherein, in the center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target Difference between center of maximum frequency point and minimum center frequency point is less than or equal to the Measurement bandwidth ability of the terminal.
Wherein, if the center frequency point of the synchronization signal for the one or more cells to be measured for including in same measurement target and The difference between center of maximum frequency point and minimum center frequency point in the center frequency point of the synchronization signal of the serving cell of terminal is small In or equal to the terminal Measurement bandwidth ability, then the terminal to it is described measurement target include one or more it is to be measured The measurement for measuring cell is common frequency measurement;Otherwise, the one or more cell to be measured that the terminal includes to the measurement target Measurement be different-frequency measure.
Wherein, the center frequency point phase of the synchronization signal for the one or more cell to be measured for including in same measurement target Together.
Wherein, if the center frequency point of the synchronization signal for the one or more cells to be measured for including in same measurement target and The center frequency point of the synchronization signal of serving cell is identical, then the one or more that the terminal includes to the measurement target is to be measured The measurement for measuring cell is common frequency measurement;Otherwise, the one or more cell to be measured that the terminal includes to the measurement target Measurement be different-frequency measure.
Wherein, the measurement interval instruction information includes: the first information for indicating whether to need to measure interval, and is needed The second information of the size at the measurement interval is indicated when the measurement interval.
Wherein, the measurement target also includes: the center frequency point of the Measurement bandwidth of terminal, on the Measurement bandwidth and terminal The Measurement bandwidth ability of report is identical.
Wherein, the method also includes:
According to the center frequency point of the synchronization signal for measuring the one or more cells to be measured that target includes, institute is determined The center frequency point of the Measurement bandwidth of terminal is stated, the Measurement bandwidth ability that the Measurement bandwidth and terminal report is identical.
The embodiment of the present invention also provides a kind of configuration method of terminal measurement, comprising:
It is that terminal configures metrical information according to the Measurement bandwidth ability of terminal;The measurement target includes in following information It is one or more: the physical area of target's center's frequency point of one or more cells to be measured, one or more cells to be measured Mark, the center frequency point of the synchronization signal of one or more cells to be measured and terminal are to one or more of to be measured Measurement interval when cell measures indicates information;
The metrical information is sent to terminal.
Wherein, before the Measurement bandwidth ability according to terminal is the step of terminal configures metrical information, the method Further include:
Receive the Measurement bandwidth ability information for the terminal that terminal reports;The Measurement bandwidth ability information includes: more A corresponding Measurement bandwidth ability of frequency range or the corresponding Measurement bandwidth ability of multiple frequency ranges.
Wherein, in the center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target Difference between center of maximum frequency point and minimum center frequency point is less than or equal to the Measurement bandwidth ability of the terminal.
Wherein, the center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target and end The difference between center of maximum frequency point and minimum center frequency point in the center frequency point of the synchronization signal of the serving cell at end is less than Or the Measurement bandwidth ability equal to the terminal, the then one or more that the terminal includes to the measurement target are to be measured The measurement of cell is common frequency measurement;Otherwise, the one or more cell to be measured that the terminal includes to the measurement target Measurement is different-frequency measure.
Wherein, the center frequency point phase of the synchronization signal for the one or more cell to be measured for including in same measurement target Together.
Wherein, if the center frequency point of the synchronization signal for the one or more cells to be measured for including in same measurement target and The center frequency point of the synchronization signal of serving cell is identical, then the one or more that the terminal includes to the measurement target is to be measured The measurement for measuring cell is common frequency measurement;Otherwise, the one or more cell to be measured that the terminal includes to the measurement target Measurement be different-frequency measure.
Wherein, the measurement target also includes: the center frequency point of the Measurement bandwidth of terminal, on the Measurement bandwidth and terminal The Measurement bandwidth ability of report is identical.
Wherein, the measurement interval instruction information includes: the first information for indicating whether to need to measure interval, and is needed The second information of the size at the measurement interval is indicated when the measurement interval.
Wherein, the method also includes:
If the terminal is different-frequency measure to the measurement for the one or more cell to be measured that the measurement target includes, really The fixed terminal needs to measure interval;Otherwise the terminal does not need measurement interval.
Wherein, the method also includes:
If the terminal is different-frequency measure to the measurement for the one or more cell to be measured that the measurement target includes, and The center frequency point of the synchronization signal for the one or more cell to be measured that the measurement target includes and the serving cell of terminal The difference between center of maximum frequency point and minimum center frequency point in the center frequency point of synchronization signal is greater than the measurement of the terminal Bandwidth ability determines that the terminal needs to measure interval;Otherwise the terminal does not need measurement interval.
Wherein, when the terminal needs to measure interval, the method also includes:
If the measurement target includes the center frequency point of the Measurement bandwidth of terminal, determine that the size at the measurement interval is the One preset value;Otherwise, it determines the size at the measurement interval is the second preset value;Wherein, first preset value is less than second Preset value.
The embodiment of the present invention also provides a kind of terminal, processor and transceiver, and the transceiver is used to report institute to base station State the Measurement bandwidth ability information of terminal;The Measurement bandwidth ability information includes: the corresponding Measurement bandwidth of multiple frequency ranges Ability or the corresponding Measurement bandwidth ability of multiple frequency ranges.
Wherein, the transceiver is also used to receive the metrical information that base station is terminal configuration;The metrical information includes: one A or multiple measurement targets;The measurement target includes one or more of following information: one or more cells to be measured Target's center's frequency point, one or more cell to be measured Physical Cell Identifier, one or more cells to be measured synchronization Measurement interval when the center frequency point and terminal of signal measure one or more of cells to be measured indicates letter Breath;
The processor is for executing following process: being measured according to the metrical information to the cell to be measured.
The embodiment of the present invention also provides a kind of base station, including processor and transceiver, and the processor is as follows for executing Process:
It is that terminal configures metrical information according to the Measurement bandwidth ability of terminal;The metrical information includes: one or more Measure target;The measurement target includes one or more of following information: in the target of one or more cells to be measured Heart frequency point, the Physical Cell Identifier of one or more cell to be measured, one or more cells to be measured synchronization signal in Measurement interval when heart frequency point and terminal measure one or more of cells to be measured indicates information;
The transceiver is used to the metrical information being sent to terminal.
Wherein, the transceiver is also used to receive the Measurement bandwidth ability information for the terminal that terminal reports;The survey Measuring bandwidth ability information includes: that the corresponding Measurement bandwidth ability of multiple frequency ranges or multiple frequency ranges are corresponding Measurement bandwidth ability.
The embodiment of the present invention also provides a kind of communication equipment, including memory, processor and is stored on the memory And the computer program that can be run on the processor, the processor realize terminal as described above when executing described program Measure the method reported;Alternatively,
The processor realizes the configuration method of terminal measurement as described above when executing described program.
The embodiment of the present invention also provides a kind of computer readable storage medium, is stored thereon with computer program, the program The step in the method for terminal measurement report as described above is realized when being executed by processor;Alternatively,
The program realizes the step in the configuration method of terminal measurement as described above when being executed by processor.
Above-mentioned technical proposal of the invention at least has the following beneficial effects:
In the method for the terminal measurement report of the embodiment of the present invention, the configuration method of terminal measurement, terminal and base station, terminal The Measurement bandwidth ability information for reporting the terminal to support to base station, base station are that the terminal of different Measurement bandwidth abilities is matched respectively Set metrical information, the measurement resource of optimum use terminal.
Detailed description of the invention
Fig. 1 shows the center frequency point schematic diagrames of co-frequency cell in the prior art and alien-frequency district;
Fig. 2 indicates the different schematic diagram of the center frequency point of the synchronization signal of co-frequency cell in the prior art;
Fig. 3 indicates the relationship signal of the center frequency point of the synchronization signal of terminal Measurement bandwidth and different community in the prior art One of figure;
Fig. 4 indicates the relationship signal of the center frequency point of the synchronization signal of terminal Measurement bandwidth and different community in the prior art The two of figure;
Fig. 5 indicates the step flow chart of the method for terminal measurement report provided in an embodiment of the present invention;
Fig. 6 indicates the step flow chart of the configuration method of terminal measurement provided in an embodiment of the present invention;
Fig. 7 indicates the schematic diagram of an example in the configuration method of terminal measurement provided in an embodiment of the present invention;
Fig. 8 shows the schematic diagrames of another example in the configuration method of terminal provided in an embodiment of the present invention measurement;
Fig. 9 indicates the structural schematic diagram of terminal provided in an embodiment of the present invention;
Figure 10 indicates the structural schematic diagram of base station provided in an embodiment of the present invention.
Specific embodiment
To keep the technical problem to be solved in the present invention, technical solution and advantage clearer, below in conjunction with attached drawing and tool Body embodiment is described in detail.
As shown in figure 5, the embodiment of the present invention also provides a kind of method of terminal measurement report, comprising:
Step 51, terminal reports the Measurement bandwidth ability information of the terminal to base station;The Measurement bandwidth ability information It include: the corresponding Measurement bandwidth ability of multiple frequency ranges or the corresponding Measurement bandwidth ability of multiple frequency ranges.It surveys Amount bandwidth ability refers specifically to the maximum measurement bandwidth of terminal support.
For example, be directed to terminal A, the Measurement bandwidth ability information that terminal A is supported include: 3GHz hereinafter, terminal A maximum Measurement bandwidth is 10MHz;3-6GHz, the maximum measurement bandwidth of terminal A are 20MHz;The maximum measurement band of 6GHz or more, terminal A Width is 100MHz.
Further, method described in the above embodiment of the present invention further include:
Receive the metrical information that base station is terminal configuration;The metrical information includes: one or more measurement targets;It is described Measuring target includes one or more of following information: target's center's frequency point of one or more cells to be measured, one or The Physical Cell Identifier of multiple cells to be measured, the center frequency point of the synchronization signal of one or more cell to be measured and end Measurement interval instruction information when end measures one or more of cells to be measured;
The cell to be measured is measured according to the metrical information.
It should be noted that the center frequency point phase for the one or more cell to be measured for including in the same measurement target Together, as above-mentioned target's center's frequency point.
For example, terminal A includes 3 maximum measurement bandwidths, then base station is that terminal A configures 3 metrical informations.Each measurement letter Breath includes: one or more measurement targets.Under normal conditions, a metrical information may include a measurement target, Huo Zheduo A measurement target.
And the measurement interval instruction information includes: the first information for indicating whether to need to measure interval, and needs institute The second information of the size at the measurement interval is indicated when stating measurement interval.In measurement interval, terminal is executed to be measured small The measurement in area, serving cell will no longer be terminal scheduling data.
Preferably, measuring the measurement letter for the one or more cell to be measured that target includes in the above embodiment of the present invention Breath (the synchronization of target's center's frequency point, the Physical Cell Identifier of one or more cells to be measured, one or more cell to be measured The center frequency point of signal) it can be stored in a cell list, it is stored by way of cell list more succinct clear.
Preferably, measurement target described in the above embodiment of the present invention also includes: the center frequency of the Measurement bandwidth of terminal Point, the Measurement bandwidth ability that the Measurement bandwidth and terminal report are identical.
If the measurement configuration information of the measurement target does not include the maximum measurement bandwidth that terminal is supported in a certain frequency range Center frequency point, the method also includes:
According to the center frequency point of the synchronization signal for measuring the one or more cells to be measured that target includes, institute is determined The center frequency point of the Measurement bandwidth of terminal is stated, the Measurement bandwidth ability that the Measurement bandwidth and terminal report is identical.That is terminal base Judge how the Measurement bandwidth of itself is placed in the center frequency point of the synchronization signal of cell to be measured.
Further, two kinds of modes for dividing measurement target, respectively mode one are provided in the above embodiment of the present invention With mode two.
Specifically, mode one are as follows:
Maximum in the center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target Difference between center frequency point and minimum center frequency point is less than or equal to the Measurement bandwidth ability of the terminal.
Further, if the center frequency of the synchronization signal for the one or more cell to be measured for including in same measurement target The difference between center of maximum frequency point and minimum center frequency point in the center frequency point of the synchronization signal of point and the serving cell of terminal Value is less than or equal to the Measurement bandwidth ability of the terminal, then the one or more that the terminal includes to the measurement target The measurement of cell to be measured is common frequency measurement;Otherwise, the one or more that the terminal includes to the measurement target is to be measured The measurement of cell is different-frequency measure.
Under such mode, the expression when a metrical information only includes a measurement target: the measurement target includes all Cell to be measured, and terminal is with frequency for the measurement of serving cell relative to terminal to the measurement of all cells to be measured Measurement;Alternatively, the measurement target include all cells to be measured, and terminal to the measurement of all cells to be measured relative to terminal It is different-frequency measure for the measurement of serving cell.
The expression when a metrical information includes two or more measurement targets, one of measurement target include The part of terminal cell to be measured, and measurement of the terminal to the measurement of part cell to be measured relative to terminal to serving cell For be common frequency measurement;Another or multiple measurement targets include another part cell to be measured of terminal, and terminal is to the portion The measurement of point cell to be measured is different-frequency measure for the measurement of serving cell relative to terminal.
Further, mode two are as follows:
The center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target is identical.
Specifically, if the center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target It is identical with the center frequency point of the synchronization signal of serving cell, then the terminal to the measurement target include it is one or more to The measurement for measuring cell is common frequency measurement;Otherwise, the one or more that the terminal includes to the measurement target is to be measured small The measurement in area is different-frequency measure.
To sum up, in the above embodiment of the present invention, the Measurement bandwidth ability that terminal reports the terminal to support to base station is believed Breath, base station are that metrical information, the measurement resource of optimum use terminal is respectively configured in the terminal of different Measurement bandwidth abilities.
As shown in fig. 6, the embodiment of the present invention also provides a kind of configuration method of terminal measurement, comprising:
It step 61, is that terminal configures metrical information according to the Measurement bandwidth ability of terminal;The metrical information includes: one Or multiple measurement targets;The measurement target includes one or more of following information: one or more cells to be measured Target's center's frequency point, the Physical Cell Identifier of one or more cells to be measured, the synchronous of one or more cells to be measured are believed Number measurement interval instruction information when being measured to one or more of cells to be measured of center frequency point and terminal;
Step 62, the metrical information is sent to terminal.
For example, terminal A includes 3 maximum measurement bandwidths, then base station is that terminal A configures 3 metrical informations.Each measurement letter Breath includes: one or more measurement targets.
Further, before step 61, the method also includes:
Receive the Measurement bandwidth ability information for the terminal that terminal reports;The Measurement bandwidth ability information includes: more A corresponding Measurement bandwidth ability of frequency range or the corresponding Measurement bandwidth ability of multiple frequency ranges.Measurement bandwidth Ability refers specifically to the maximum measurement bandwidth of terminal support.
For example, be directed to terminal A, the Measurement bandwidth ability information that terminal A is supported include: 3GHz hereinafter, terminal A maximum Measurement bandwidth is 10MHz;3-6GHz, the maximum measurement bandwidth of terminal A are 20MHz;The maximum measurement band of 6GHz or more, terminal A Width is 100MHz.
It includes: the first information for indicating whether to need to measure interval that the measurement, which is spaced instruction information, and described in needs The second information of the size at the measurement interval is indicated when measurement interval.
Preferably, measuring the measurement letter for the one or more cell to be measured that target includes in the above embodiment of the present invention Breath (the synchronization of target's center's frequency point, the Physical Cell Identifier of one or more cells to be measured, one or more cell to be measured The center frequency point of signal) it can be stored in a cell list, it is stored by way of cell list more succinct clear.
Preferably, the measurement target also includes in the above embodiment of the present invention: the center frequency of the Measurement bandwidth of terminal Point, the Measurement bandwidth ability that the Measurement bandwidth and terminal report are identical.
If the measurement configuration information of the measurement target does not include the maximum measurement bandwidth that terminal is supported in a certain frequency range Center frequency point, terminal can be based on the center frequency points of the synchronization signal for the one or more cell to be measured for including in measurement target Come judge itself maximum measurement bandwidth this how to place, and judge the center frequency point of the maximum measurement bandwidth of itself.
Further, two kinds of modes for dividing measurement target, respectively mode one are provided in the above embodiment of the present invention With mode two.
Specifically, mode one are as follows:
Maximum in the center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target Difference between center frequency point and minimum center frequency point is less than or equal to the Measurement bandwidth ability of the terminal.
Further, if the center frequency of the synchronization signal for the one or more cell to be measured for including in same measurement target The difference between center of maximum frequency point and minimum center frequency point in the center frequency point of the synchronization signal of point and the serving cell of terminal Value is less than or equal to the Measurement bandwidth ability of the terminal, then the one or more that the terminal includes to the measurement target The measurement of cell to be measured is common frequency measurement;Otherwise, the one or more that the terminal includes to the measurement target is to be measured The measurement of cell is different-frequency measure.
Under such mode, the expression when a metrical information only includes a measurement target: the measurement target includes all Cell to be measured, and terminal is with frequency for the measurement of serving cell relative to terminal to the measurement of all cells to be measured Measurement;Alternatively, the measurement target include all cells to be measured, and terminal to the measurement of all cells to be measured relative to terminal It is different-frequency measure for the measurement of serving cell.
The expression when a metrical information includes two or more measurement targets, one of measurement target include The part of terminal cell to be measured, and measurement of the terminal to the measurement of part cell to be measured relative to terminal to serving cell For be common frequency measurement;Another or multiple measurement targets include another part cell to be measured of terminal, and terminal is to the portion The measurement of point cell to be measured is different-frequency measure for the measurement of serving cell relative to terminal.
It should be noted that judging whether terminal needs to measure the step at interval in mode one provided in an embodiment of the present invention Suddenly include:
If the terminal is different-frequency measure to the measurement for the one or more cell to be measured that the measurement target includes, really The fixed terminal needs to measure interval;Otherwise the terminal does not need measurement interval.
Specifically, mode two are as follows:
The center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target is identical.
Further, if the center frequency of the synchronization signal for the one or more cell to be measured for including in same measurement target Point is identical with the center frequency point of the synchronization signal of serving cell, then the one or more that the terminal includes to the measurement target The measurement of cell to be measured is common frequency measurement;Otherwise, the one or more that the terminal includes to the measurement target is to be measured The measurement of cell is different-frequency measure.
It should be noted that judging whether terminal needs to measure the step at interval in mode two provided in an embodiment of the present invention Suddenly include:
If the terminal is different-frequency measure to the measurement for the one or more cell to be measured that the measurement target includes, and The center frequency point of the synchronization signal for the one or more cell to be measured that the measurement target includes and the serving cell of terminal The difference between center of maximum frequency point and minimum center frequency point in the center frequency point of synchronization signal is greater than the measurement of the terminal Bandwidth ability determines that the terminal needs to measure interval;Otherwise the terminal does not need measurement interval.
Further, when the terminal needs to measure interval,
If the measurement target includes the center frequency point of the Measurement bandwidth of terminal, determine that the size at the measurement interval is the One preset value, the first preset value are generally 6ms, which includes the time readjusted frequency point and measure synchronization signal; Otherwise, it determines the size at the measurement interval is the second preset value, the second preset value is generally 1ms or 2ms, and the measurement interval is only Time including readjusting frequency point;Wherein, first preset value is less than the second preset value.
It is specific real below with reference to one for the configuration method of clearer description terminal measurement provided in an embodiment of the present invention Example is described in detail:
Employing mode one divides measurement target, as shown in fig. 7, terminal B and terminal C serving cell having the same, cell 1, cell 2 and cell 3 are the cell to be measured of terminal B and terminal C, and identical with the center frequency point of serving cell;In Fig. 7 also Show the maximum measurement bandwidth of the maximum measurement bandwidth of a certain frequency range of terminal B, a certain frequency range of terminal C.
For the configuration of terminal B, metrical information includes 2 measurement targets.
Measurement target 1 includes: target's center's frequency point (the i.e. center frequency point of the center frequency point of cell 1 and cell 2,1 He of cell The center frequency point having the same of cell 2), center frequency point, the center frequency point of the synchronization signal of cell 2 of the synchronization signal of cell 1 And the instruction information at measurement interval.
Terminal B belongs to common frequency measurement for measuring the measurement of target 1, therefore terminal does not need to do readjustment frequency point, eventually End B does not need to interrupt in the data of serving cell yet, therefore does not need measurement interval.The maximum measurement bandwidth of terminal B can prop up Hold while measuring the synchronization signal block of cell 1 and cell 2.But depend on how the maximum measurement bandwidth of terminal B places, it can To see as shown in fig. 7, if the maximum measurement bandwidth of terminal B is mobile to the left side of Fig. 7, the synchronization signal block of that the one cell 2 In the range of the maximum measurement bandwidth for being not included in terminal B is supported.So a kind of possible mode is that terminal is based on measurement mesh The center frequency point position of the synchronization signal of cell judges how the Measurement bandwidth of oneself is placed in mark;Another way is to measure The center frequency point position of its maximum measurement bandwidth of terminal is informed in the measurement configuration information of target.
Measurement target 2 includes: the center frequency of target's center's frequency point (i.e. the center frequency point of cell 3), the synchronization signal of cell 3 The instruction information at point and measurement interval.
Terminal B belongs to different-frequency measure for measuring the measurement of target 2, and the Measurement bandwidth of terminal B can not be simultaneously comprising service The synchronization signal block of cell and cell 3, the synchronization signal block position that terminal B needs to readjust cell 3 measure.
Also include if measured in the measurement configuration information of target 2: the center frequency point of the maximum measurement bandwidth of terminal B, net Network can accurately know the frequency domain position of terminal measurement, therefore the data of serving cell do not need to interrupt when measuring, it is only necessary to It to be interrupted within the time of readjustment (retuning), measurement interval (i.e. short one short can be configured at this time Measurement gap), the length at short measurement interval only includes the time (specially 1ms or 2ms) of retuning.
If measuring the measurement configuration information of target 2 not comprising the center frequency point of the maximum measurement bandwidth of terminal B, terminal base Maximum measurement bandwidth is placed in realization in oneself, then network can not accurately know the frequency domain position of terminal measurement, needs to match at this time It sets measurement interval and is equal to 6ms, to measure.
For the configuration of terminal C, metrical information includes: 1 measurement target.
The measurement target includes: target's center's frequency point (the i.e. center frequency point of cell 1, the center frequency point and cell of cell 2 3 center frequency point), the synchronization of the center frequency point, the center frequency point, cell 3 of the synchronization signal of cell 2 of the synchronization signal of cell 1 The center frequency point of signal and the instruction information at measurement interval.
The measurement configuration information of the measurement target also may include the center frequency point of the maximum measurement bandwidth of terminal C;Alternatively, such as Fruit measures the measurement configuration information of target not comprising the center frequency point of the maximum measurement bandwidth of terminal C, then terminal is based on measurement mesh The position of the center frequency point of the synchronization signal of each cell judges how the maximum measurement bandwidth of oneself places in mark.
Since the synchronization signal block of cell 1, cell 2, cell 3 and serving cell is included in the Measurement bandwidth of terminal C, It does not need to readjust when the measurement of terminal C, is consequently belonging to common frequency measurement, terminal C is not needed in the data of serving cell yet It interrupts, therefore does not need measurement interval.
Employing mode two divides measurement target, as shown in figure 8, terminal D and terminal E serving cell having the same, cell 4, cell 5 and cell 6 are terminal D and the cell to be measured of terminal E, and identical with the center frequency point of serving cell;Also show in Fig. 8 The maximum measurement bandwidth of terminal D, the maximum measurement bandwidth of terminal E are gone out.
For the configuration of terminal D, metrical information includes 3 measurement targets.
Measurement target 1 includes: the center frequency of target's center's frequency point (i.e. the center frequency point of cell 4), the synchronization signal of cell 4 The instruction information at point and measurement interval.
Since the center frequency point of the synchronization signal of cell 4 is identical with the center frequency point of the synchronization signal of serving cell, Measure target 1 can not configurating terminal maximum measurement bandwidth center frequency point.
Terminal D belongs to common frequency measurement to the measurement of measurement target 1, because of the center frequency point kimonos of the synchronization signal of cell 4 The center frequency point of the synchronization signal for cell of being engaged in is identical, therefore terminal does not need to do readjustment frequency point (retuning), therefore eventually It holds and does not also need to interrupt in the data of serving cell, therefore do not need measurement interval.
Measurement target 2 includes: the center frequency of target's center's frequency point (i.e. the center frequency point of cell 5), the synchronization signal of cell 5 Point, terminal D maximum measurement bandwidth center frequency point and measurement interval instruction information.
Measurement target 2 is different-frequency measure for terminal, therefore the center frequency point of the synchronization signal of cell 5 and serving cell The center frequency point of synchronization signal is different.
Due to the difference between the center frequency point of the synchronization signal of the center frequency point and serving cell of the synchronization signal of cell 5 Less than the Measurement bandwidth ability of terminal D, therefore terminal D does not need to do new adjustment frequency point (retuning), therefore terminal is servicing The data of cell do not need to interrupt yet, therefore do not need measurement interval.
Measurement target 3 includes: the center frequency of target's center's frequency point (i.e. the center frequency point of cell 6), the synchronization signal of cell 6 Point, terminal D maximum measurement bandwidth center frequency point and measurement interval instruction information.
Measurement target 3 is different-frequency measure for terminal, therefore the center frequency point of the synchronization signal of cell 6 and serving cell The center frequency point of synchronization signal is different.
Due to the difference between the center frequency point of the synchronization signal of the center frequency point and serving cell of the synchronization signal of cell 6 Greater than the Measurement bandwidth ability of terminal D, therefore terminal D needs do new adjustment frequency point (retuning), therefore terminal is small in service The data in area need to interrupt, it is therefore desirable to measurement interval.
Also include if measured in the measurement configuration information of target 3: the center frequency point of the maximum measurement bandwidth of terminal D, net Network can accurately know the frequency domain position of terminal measurement, therefore the data of serving cell do not need to interrupt when measuring, it is only necessary to It to be interrupted within the time of readjustment (retuning), measurement interval (i.e. short one short can be configured at this time Measurement gap), the length at short measurement interval only includes the time (specially 1ms or 2ms) of retuning.
If the measurement configuration information for measuring target 3 does not include the center frequency point of the maximum measurement bandwidth of terminal D, terminal base Maximum measurement bandwidth is placed in realization in oneself, then network can not accurately know the frequency domain position of terminal measurement, needs to match at this time It sets measurement interval and is equal to 6ms, to measure.
For the configuration of terminal E, metrical information also includes 3 measurement targets.Cell 4, cell 5 and cell 6 are respectively corresponded, And the center frequency point of the Measurement bandwidth ability of the center frequency point and terminal of their respective synchronization signals, and measurement be The no size for needing to measure interval and measurement interval.
If the center frequency point of the maximum measurement bandwidth of terminal E is not configured, terminal E based on measurement target in cell it is same The heart frequency point position of step signal judges how the Measurement bandwidth of oneself is placed.
Since cell 4, cell 5 and cell 6 and the synchronization signal of serving cell are included in the Measurement bandwidth of terminal, eventually It does not need to be retuning when the measurement of end, therefore does not need measurement interval.
To sum up, the Measurement bandwidth ability letter that terminal reports the terminal to support to base station in the above embodiment of the present invention Breath, base station are that metrical information, the measurement resource of optimum use terminal is respectively configured in the terminal of different Measurement bandwidth abilities.
As shown in figure 9, the embodiment of the present invention also provides a kind of terminal, processor 800 and transceiver 810, which is also wrapped User interface 820 is included, the transceiver 810 is used to report the Measurement bandwidth ability information of the terminal to base station;The measurement Bandwidth ability information includes: the corresponding Measurement bandwidth ability of multiple frequency ranges or the corresponding survey of multiple frequency ranges Measure bandwidth ability.
Preferably, the transceiver is also used to receive the metrical information that base station is terminal configuration;The metrical information includes: One or more measurement target;The measurement target includes one or more of following information: one or more to be measured small Target's center's frequency point in area, the Physical Cell Identifier of one or more cells to be measured, one or more cells to be measured it is same Measurement interval instruction letter when the center frequency point and terminal for walking signal measure one or more of cells to be measured Breath;
The processor is for executing following process: being measured according to the metrical information to the cell to be measured.
Preferably, in the center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target Center of maximum frequency point and minimum center frequency point between difference be less than or equal to the Measurement bandwidth ability of the terminal.
Preferably, if the center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target Difference between the center of maximum frequency point in the center frequency point of the synchronization signal of the serving cell of terminal and minimum center frequency point Less than or equal to the Measurement bandwidth ability of the terminal, then the terminal to the measurement target include it is one or more to The measurement for measuring cell is common frequency measurement;Otherwise, the one or more that the terminal includes to the measurement target is to be measured small The measurement in area is different-frequency measure.
Preferably, the center frequency point phase of the synchronization signal for the one or more cell to be measured for including in same measurement target Together.
Preferably, if the center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target It is identical with the center frequency point of the synchronization signal of serving cell, then the terminal to the measurement target include it is one or more to The measurement for measuring cell is common frequency measurement;Otherwise, the one or more that the terminal includes to the measurement target is to be measured small The measurement in area is different-frequency measure.
Preferably, the measurement interval instruction information includes: the first information for indicating whether to need to measure interval, Yi Jixu Want the second information that the size at the measurement interval is indicated when the measurement interval.
Preferably, the measurement target also includes: the center frequency point of the Measurement bandwidth of terminal, the Measurement bandwidth and terminal The Measurement bandwidth ability reported is identical.
Preferably, the processor is also used to execute following process:
According to the center frequency point of the synchronization signal for measuring the one or more cells to be measured that target includes, institute is determined The center frequency point of the Measurement bandwidth of terminal is stated, the Measurement bandwidth ability that the Measurement bandwidth and terminal report is identical.
To sum up, the Measurement bandwidth ability letter that terminal reports the terminal to support to base station in the above embodiment of the present invention Breath, base station are that metrical information, the measurement resource of optimum use terminal is respectively configured in the terminal of different Measurement bandwidth abilities.
It should be noted that terminal provided in an embodiment of the present invention is the method for being able to carry out above-mentioned terminal measurement report Terminal, then all embodiments of the method for above-mentioned terminal measurement report are suitable for the terminal, and can reach same or similar Beneficial effect.
The embodiment of the present invention also provides a kind of communication equipment, including memory, processor and is stored on the memory And the computer program that can be run on the processor, the processor realize terminal as described above when executing described program Each process in the embodiment of the method reported is measured, and identical technical effect can be reached, it is no longer superfluous here to avoid repeating It states.
The embodiment of the present invention also provides a kind of computer readable storage medium, is stored thereon with computer program, the program Each process in the embodiment of the method for terminal measurement report as described above is realized when being executed by processor, and can be reached identical Technical effect, to avoid repeating, which is not described herein again.Wherein, the computer readable storage medium, such as read-only memory (Read-Only Memory, abbreviation ROM), random access memory (Random Access Memory, abbreviation RAM), magnetic disk Or CD etc..
As shown in Figure 10, the embodiment of the present invention also provides a kind of base station, including processor 900 and transceiver 910, the place Reason device 900 is for executing following process:
The processor is for executing following process:
It is that terminal configures metrical information according to the Measurement bandwidth ability of terminal;The metrical information includes: one or more Measure target;The measurement target includes one or more of following information: in the target of one or more cells to be measured Heart frequency point, the Physical Cell Identifier of one or more cell to be measured, one or more cells to be measured synchronization signal in Measurement interval when heart frequency point and terminal measure one or more of cells to be measured indicates information;
The transceiver is used to the metrical information being sent to terminal.
Preferably, the transceiver is also used to receive the Measurement bandwidth ability information for the terminal that terminal reports;It is described Measurement bandwidth ability information includes: that the corresponding Measurement bandwidth ability of multiple frequency ranges or multiple frequency ranges respectively correspond Measurement bandwidth ability.
Preferably, in the center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target Center of maximum frequency point and minimum center frequency point between difference be less than or equal to the Measurement bandwidth ability of the terminal.
Preferably, the center frequency point of the synchronization signal for the one or more cells to be measured for including in same measurement target and The difference between center of maximum frequency point and minimum center frequency point in the center frequency point of the synchronization signal of the serving cell of terminal is small In or equal to the terminal Measurement bandwidth ability, then the terminal to it is described measurement target include one or more it is to be measured The measurement for measuring cell is common frequency measurement;Otherwise, the one or more cell to be measured that the terminal includes to the measurement target Measurement be different-frequency measure.
Preferably, the center frequency point phase of the synchronization signal for the one or more cell to be measured for including in same measurement target Together.
Preferably, if the center frequency point of the synchronization signal for the one or more cell to be measured for including in same measurement target It is identical with the center frequency point of the synchronization signal of serving cell, then the terminal to the measurement target include it is one or more to The measurement for measuring cell is common frequency measurement;Otherwise, the one or more that the terminal includes to the measurement target is to be measured small The measurement in area is different-frequency measure.
Preferably, the measurement target also includes: the center frequency point of the Measurement bandwidth of terminal, the Measurement bandwidth and terminal The Measurement bandwidth ability reported is identical.
Preferably, the measurement interval instruction information includes: the first information for indicating whether to need to measure interval, Yi Jixu Want the second information that the size at the measurement interval is indicated when the measurement interval.
Preferably, the processor is also used to execute following process:
If the terminal is different-frequency measure to the measurement for the one or more cell to be measured that the measurement target includes, really The fixed terminal needs to measure interval;Otherwise the terminal does not need measurement interval.
Preferably, the processor is also used to execute following process:
If the terminal is different-frequency measure to the measurement for the one or more cell to be measured that the measurement target includes, and The center frequency point of the synchronization signal for the one or more cell to be measured that the measurement target includes and the serving cell of terminal The difference between center of maximum frequency point and minimum center frequency point in the center frequency point of synchronization signal is greater than the measurement of the terminal Bandwidth ability determines that the terminal needs to measure interval;Otherwise the terminal does not need measurement interval.
Preferably, the processor is also used to execute following process:
When the terminal needs to measure interval, if the measurement target includes the center frequency point of the Measurement bandwidth of terminal, really The size at the fixed measurement interval is the first preset value;Otherwise, it determines the size at the measurement interval is the second preset value;Its In, first preset value is less than the second preset value.
To sum up, the Measurement bandwidth ability letter that terminal reports the terminal to support to base station in the above embodiment of the present invention Breath, base station are that metrical information, the measurement resource of optimum use terminal is respectively configured in the terminal of different Measurement bandwidth abilities.
It should be noted that base station provided in an embodiment of the present invention is the configuration method for being able to carry out above-mentioned terminal measurement Base station, then all embodiments of the configuration method of above-mentioned terminal measurement are suitable for the base station, and can reach same or similar Beneficial effect.
The embodiment of the present invention also provides a kind of communication equipment, including memory, processor and is stored on the memory And the computer program that can be run on the processor, the processor realize terminal as described above when executing described program Each process in the configuration method embodiment of measurement, and identical technical effect can be reached, it is no longer superfluous here to avoid repeating It states.
The embodiment of the present invention also provides a kind of computer readable storage medium, is stored thereon with computer program, the program Each process in the configuration method embodiment of terminal measurement as described above is realized when being executed by processor, and can be reached identical Technical effect, to avoid repeating, which is not described herein again.Wherein, the computer readable storage medium, such as read-only memory (Read-Only Memory, abbreviation ROM), random access memory (Random Access Memory, abbreviation RAM), magnetic disk Or CD etc..
It should be understood by those skilled in the art that, embodiments herein can provide as method, system or computer program Product.Therefore, complete hardware embodiment, complete software embodiment or implementation combining software and hardware aspects can be used in the application The form of example.Moreover, can be used can in the computer that one or more wherein includes computer usable program code by the application Read the form for the computer program product implemented on storage medium (including but not limited to magnetic disk storage and optical memory etc.).
The application is reference according to the method for the embodiment of the present application, the flow chart of equipment (system) and computer program product And/or block diagram describes.It should be understood that each process in flowchart and/or the block diagram can be realized by computer program instructions And/or the combination of the process and/or box in box and flowchart and/or the block diagram.It can provide these computer programs to refer to Enable the processor of general purpose computer, special purpose computer, Embedded Processor or other programmable data processing devices to generate One machine so that by the instruction that the processor of computer or other programmable data processing devices executes generate for realizing The device for the function of being specified in one or more flows of the flowchart and/or one box or multiple boxes.
These computer program instructions, which may also be stored in, is able to guide computer or other programmable data processing devices with spy Determine in the computer readable storage medium that mode works, so that the instruction being stored in the computer readable storage medium generates packet The paper products of command device are included, which realizes in one side of one or more flows of the flowchart and/or block diagram The function of being specified in frame or multiple boxes.
These computer program instructions can also be loaded into computer or other programmable data processing devices, so that calculating On machine or other programmable devices execute series of operation steps to generate computer implemented processing, thus computer or its The instruction that executes on his section's programming device is provided for realizing in one or more flows of the flowchart and/or one, block diagram The step of function of being specified in box or multiple boxes.
The above is a preferred embodiment of the present invention, it is noted that for those skilled in the art For, without departing from the principles of the present invention, several improvements and modifications can also be made, these improvements and modifications It should be regarded as protection scope of the present invention.

Claims (26)

1. a kind of method of terminal measurement report characterized by comprising
Terminal reports the Measurement bandwidth ability information of the terminal to base station;The Measurement bandwidth ability information includes: multiple frequencies The corresponding Measurement bandwidth ability of section or the corresponding Measurement bandwidth ability of multiple frequency ranges.
2. the method according to claim 1, wherein the method also includes:
Receive the metrical information that base station is terminal configuration;The metrical information includes: one or more measurement targets;The measurement Target includes one or more of following information: target's center's frequency point of one or more cells to be measured, one or more The Physical Cell Identifier of cell to be measured, one or more cells to be measured synchronization signal center frequency point and terminal pair Measurement interval when one or more of cells to be measured measure indicates information;
The cell to be measured is measured according to the metrical information.
3. according to the method described in claim 2, it is characterized in that, the one or more for including in same measurement target is to be measured The difference between center of maximum frequency point and minimum center frequency point in the center frequency point of the synchronization signal of cell is less than or equal to The Measurement bandwidth ability of the terminal.
4. according to the method described in claim 3, it is characterized in that, if the one or more for including in same measurement target is to be measured Measure the center of maximum frequency in the center frequency point of the synchronization signal of the center frequency point of the synchronization signal of cell and the serving cell of terminal Difference between point and minimum center frequency point is less than or equal to the Measurement bandwidth ability of the terminal, then the terminal is to described The measurement for the one or more cell to be measured that measurement target includes is common frequency measurement;Otherwise, the terminal is to the measurement mesh The measurement for the one or more cell to be measured that mark includes is different-frequency measure.
5. according to the method described in claim 2, it is characterized in that, the one or more for including in same measurement target is to be measured The center frequency point of the synchronization signal of cell is identical.
6. according to the method described in claim 5, it is characterized in that, if the one or more for including in same measurement target is to be measured The center frequency point for measuring the synchronization signal of cell is identical with the center frequency point of the synchronization signal of serving cell, then the terminal is to described The measurement for the one or more cell to be measured that measurement target includes is common frequency measurement;Otherwise, the terminal is to the measurement mesh The measurement for the one or more cell to be measured that mark includes is different-frequency measure.
7. according to the method described in claim 2, it is characterized in that, instruction information in measurement interval includes: to indicate whether to need The first information at interval is measured, and needs to indicate the second information of the size at the measurement interval when measurement interval.
8. according to the method described in claim 2, it is characterized in that, the measurement target also includes: the Measurement bandwidth of terminal Center frequency point, the Measurement bandwidth ability that the Measurement bandwidth and terminal report are identical.
9. according to the method described in claim 2, it is characterized in that, the method also includes:
According to the center frequency point of the synchronization signal for measuring the one or more cells to be measured that target includes, the end is determined The center frequency point of the Measurement bandwidth at end, the Measurement bandwidth ability that the Measurement bandwidth and terminal report are identical.
10. a kind of configuration method of terminal measurement characterized by comprising
It is that terminal configures metrical information according to the Measurement bandwidth ability of terminal;The metrical information includes: one or more measurements Target;The measurement target includes one or more of following information: target's center's frequency of one or more cells to be measured Point, the Physical Cell Identifier of one or more cell to be measured, one or more cells to be measured synchronization signal center frequency Measurement interval when point and terminal measure one or more of cells to be measured indicates information;
The metrical information is sent to terminal.
11. according to the method described in claim 10, it is characterized in that, described match according to the Measurement bandwidth ability of terminal for terminal Before the step of setting metrical information, the method also includes:
Receive the Measurement bandwidth ability information for the terminal that terminal reports;The Measurement bandwidth ability information includes: multiple frequencies The corresponding Measurement bandwidth ability of section or the corresponding Measurement bandwidth ability of multiple frequency ranges.
12. according to the method described in claim 10, it is characterized in that, the one or more for including in same measurement target is to be measured The difference measured between the center of maximum frequency point in the center frequency point of the synchronization signal of cell and minimum center frequency point is less than or waits In the Measurement bandwidth ability of the terminal.
13. according to the method for claim 12, which is characterized in that the one or more for including in same measurement target is to be measured Measure the center of maximum frequency in the center frequency point of the synchronization signal of the center frequency point of the synchronization signal of cell and the serving cell of terminal Difference between point and minimum center frequency point is less than or equal to the Measurement bandwidth ability of the terminal, then the terminal is to described The measurement for the one or more cell to be measured that measurement target includes is common frequency measurement;Otherwise, the terminal is to the measurement mesh The measurement for the one or more cell to be measured that mark includes is different-frequency measure.
14. according to the method described in claim 10, it is characterized in that, the one or more for including in same measurement target is to be measured The center frequency point for measuring the synchronization signal of cell is identical.
15. according to the method for claim 14, which is characterized in that if include in same measurement target it is one or more to The center frequency point for measuring the synchronization signal of cell is identical with the center frequency point of the synchronization signal of serving cell, then the terminal is to institute The measurement for stating the one or more cell to be measured that measurement target includes is common frequency measurement;Otherwise, the terminal is to the measurement The measurement for the one or more cell to be measured that target includes is different-frequency measure.
16. according to the method described in claim 10, it is characterized in that, the measurement target also includes: the Measurement bandwidth of terminal Center frequency point, the Measurement bandwidth ability that the Measurement bandwidth and terminal report is identical.
17. according to the method described in claim 10, it is characterized in that, instruction information in measurement interval includes: to indicate whether It needs to measure the first information at interval, and needs to indicate the second letter of the size at the measurement interval when measurement interval Breath.
18. according to the method for claim 13, which is characterized in that the method also includes:
If the terminal is different-frequency measure to the measurement for the one or more cell to be measured that the measurement target includes, institute is determined Terminal is stated to need to measure interval;Otherwise the terminal does not need measurement interval.
19. according to the method for claim 15, which is characterized in that the method also includes:
If the terminal is different-frequency measure to the measurement for the one or more cell to be measured that the measurement target includes, and described The center frequency point of the synchronization signal for the one or more cell to be measured that measurement target includes is synchronous with the serving cell of terminal The difference between center of maximum frequency point and minimum center frequency point in the center frequency point of signal is greater than the Measurement bandwidth of the terminal Ability determines that the terminal needs to measure interval;Otherwise the terminal does not need measurement interval.
20. method described in 8 or 19 according to claim 1, which is characterized in that when the terminal needs to measure interval, the side Method further include:
If the measurement target includes the center frequency point of terminal Measurement bandwidth, determine that the size at the measurement interval is first default Value;Otherwise, it determines the size at the measurement interval is the second preset value;Wherein, first preset value is less than the second preset value.
21. a kind of terminal, processor and transceiver, which is characterized in that the transceiver is used to report the terminal to base station Measurement bandwidth ability information;The Measurement bandwidth ability information includes: the corresponding Measurement bandwidth ability of multiple frequency ranges, or The corresponding Measurement bandwidth ability of multiple frequency ranges.
22. terminal according to claim 21, which is characterized in that the transceiver is also used to receive base station as terminal configuration Metrical information;The measurement target includes one or more of following information: the target of one or more cells to be measured Center frequency point, the Physical Cell Identifier of one or more cell to be measured, one or more cells to be measured synchronization signal Measurement interval when center frequency point and terminal measure one or more of cells to be measured indicates information;
The processor is for executing following process: being measured according to the metrical information to the cell to be measured.
23. a kind of base station, including processor and transceiver, which is characterized in that the processor is for executing following process:
It is that terminal configures metrical information according to the Measurement bandwidth ability of terminal;The metrical information includes: one or more measurements Target;The measurement target includes one or more of following information: target's center's frequency of one or more cells to be measured Point, the Physical Cell Identifier of one or more cell to be measured, one or more cells to be measured synchronization signal center frequency Measurement interval when point and terminal measure one or more of cells to be measured indicates information;
The transceiver is used to the metrical information being sent to terminal.
24. base station according to claim 23, which is characterized in that the transceiver be also used to receive terminal report it is described The Measurement bandwidth ability information of terminal;The Measurement bandwidth ability information includes: the corresponding Measurement bandwidth energy of multiple frequency ranges Power or the corresponding Measurement bandwidth ability of multiple frequency ranges.
25. a kind of communication equipment, including memory, processor and it is stored on the memory and can transports on the processor Capable computer program, which is characterized in that the processor is realized when executing described program such as any one of claim 1 to 9 institute The method for the terminal measurement report stated;Alternatively,
The processor realizes the configuration side such as the described in any item terminal measurements of claim 10 to 20 when executing described program Method.
26. a kind of computer readable storage medium, is stored thereon with computer program, which is characterized in that the program is by processor The step in the method for terminal measurement report as described in any one of claim 1 to 9 is realized when execution;Alternatively,
It is realized when the program is executed by processor in the configuration method such as the described in any item terminal measurements of claim 10 to 20 The step of.
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Application publication date: 20190322