Method and device for determining start point of discontinuous reception period
A technology of discontinuous reception and starting point, applied in the field of mobile communication, it can solve the problems of not considering CQI, SRS, and RI transmission factors, and cannot effectively evaluate the quality of uplink and downlink channels, so as to improve throughput, ensure evaluation, and equalize hardware. load effect
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example 1
[0097] In this example, the DRX cycle is configured for the UE in a certain LTE cell. The DRX cycle is set to 40ms, the onduration is 10ms, the CQI reporting cycle is 40ms, the CQI subframe offset is 5, and the RI cycle is 40ms. The RI subframe offset is 6, the SRS period is 20ms, and the SRS subframe offset is 1;
[0098] Configuring the starting point of the DRX cycle according to the technical solution of the embodiment of the present invention includes the following processing:
[0099] Step 1, randomly generate an N between 0 and 39, N=10, M=N;
[0100] Step 2, determine whether the CQI has a chance to transmit within the onduration time:
[0101] Step 21, calculate DRX cycle , CQI sending period, and the least common multiple of 10: 40;
[0102] Step 22, assigning n=0, that is, starting from the first cycle of DRX, the starting point is that SFN (system frame number) is equal to 0;
[0103] Step 23, calculate Y CQI1 =ceil((10+0+40*0-5) / 40)=1;
[0104] Step 24, calc...
example 2
[0112] In this example, due to service changes, the DRX cycle is reconfigured for UEs in an LTE cell. The DRX cycle is set to 80ms, the onduration is 10ms, the CQI reporting cycle is 40ms, the CQI subframe offset is 5, and the RI cycle is 80ms, RI subframe offset is 5, SRS period is 20ms, SRS subframe offset is 1;
[0113] Configuring the starting point of the DRX cycle according to the technical solution of the embodiment of the present invention includes the following processing:
[0114] Step 1, randomly generate an N between 0 and 79, N=50, M=N;
[0115] Step 2, determine whether the CQI has a chance to transmit within the onduration time:
[0116] Step 21, calculate DRX cycle , CQI sending period, and the least common multiple of 10: 80;
[0117] Step 22, assigning n=0, that is, starting from the first cycle of the DRX cycle, the starting point is that SFN (system frame number) is equal to 0;
[0118] Step 23, calculate Y CQI1 =ceil((50+0+80*0-5) / 40)=2;
[0119] Ste...
example 3
[0127] When the CQI, RI, SRS, and DRX cycles of the UE have configurations that are not an integer multiple of 10, the method in the technical solution has more advantages. In this example, since the UE in a certain LTE cell performs DRX configuration and modifies the CQI, SRS, and RI parameters for some reasons, it is necessary to re-evaluate whether the DRX cycle start point is properly set.
[0128] Set the DRX period to 40ms, the duration to 10ms, the CQI reporting period to 40ms, the CQI subframe offset to 5, the RI period to 40ms, the RI subframe offset to 6, the SRS period to 20ms, and the SRS subframe offset to 1;
[0129] Due to system performance requirements, the CQI period is 20ms, the CQI subframe offset is 5, the RI period is 40ms, the RI subframe offset is 6, the SRS period is 20ms, and the SRS subframe offset is 1;
[0130] Configuring the start point of the DRX cycle according to the technical solution of the embodiment of the present invention includes the fo...
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