Dmrs enhancement for higher order mu-mimo
US-2018026684-A1 · Jan 25, 2018 · US
US11139934B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11139934-B2 |
| Application number | US-201916503474-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 4, 2019 |
| Priority date | Jan 4, 2017 |
| Publication date | Oct 5, 2021 |
| Grant date | Oct 5, 2021 |
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Embodiments provide a method for transmitting a reference signal between a base station and a terminal. In this method, a parameter is determined by a terminal based on frequency domain location information of a frequency domain resource unit. The parameter is used to determine a sequence of the reference signal, and the reference signal is carried on the frequency domain resource unit. The reference signal can be sent to the base station by the terminal. In some embodiments, the reference signal sent by the base station can be received by the terminal. According to this method, a peak-to-average power ratio when a single terminal sends data to a base station can be reduced, and communication interference between different cells can be canceled or reduced as much as possible.
Opening claim text (preview).
What is claimed is: 1. A method for communicating in a communications system, wherein the communications system comprises: a first cell; a second cell; a terminal; and a base station; wherein the method comprises: determining, by the terminal, a first parameter, based on frequency domain location information of a frequency domain resource unit, wherein the first parameter is for determining a sequence of a reference signal, and the reference signal is carried on the frequency domain resource unit; and transmitting, by the terminal, the reference signal to the base station, or receiving, by the terminal, the reference signal sent by the base station; and, wherein the terminal belongs to the first cell, where frequency domain resource units of the first cell comprise (1) a first frequency domain resource unit and (2) a second frequency domain resource unit, and the first parameter comprises a second parameter and a third parameter, wherein the second parameter is for determining the sequence of the reference signal carried on the first frequency domain resource unit, the third parameter is for determining the sequence of the reference signal carried on the second frequency domain resource unit, and the second parameter is different from the third parameter; the first parameter, based on the frequency domain location information for the frequency domain resource unit, varies between the first cell and the second cell; wherein, for the first cell, the second and the third parameters of the sequence of the resource signal constitute a first parameter set and for the second cell, the second and the third parameters of the sequence of the reference signal constitute a second parameter set, wherein the first parameter set is the same as or partially overlaps with the second parameter set; and wherein the communications system further comprises a full bandwidth or a sub-band that includes n-frequency domain resource units with contiguous frequency domain locations, and n-parameters are successively allocated to the n-frequency domain resource units with contiguous frequency domain locations in an order of a 1+x , . . . , and a (n+x)%n ; where X is determined based on identification information of a cell, and % is a remainder operation symbol; or n-parameters are successively allocated to the n-frequency domain resource units with the contiguous frequency domain locations in an order of a 1+x , a 2+x , . . . , and a (n+x) , where X is determined based on identification information of a cell. 2. The method according to claim 1 , wherein one or more frequency domain resource units are for carrying the reference signal on the full bandwidth or the sub-band of the communications system. 3. The method according to claim 1 , wherein the frequency domain location information of the frequency domain resource unit comprises: (1) an identifier of the frequency domain resource unit; or (2) a frequency domain start location of the resource unit. 4. The method according to claim 1 , wherein the frequency domain resource unit is mapped to one or more contiguous subcarriers, or the frequency domain resource unit is mapped to a plurality of non-contiguous subcarriers; and when the frequency domain resource unit is mapped to non-contiguous subcarriers, the terminal further determines, based on the frequency domain location information of the frequency domain resource unit, a weighting coefficient for mapping the sequence of the reference signal to each subcarrier. 5. The method according to claim 1 , wherein the terminal further determines the first parameter based on time domain location information of the frequency domain resource unit. 6. The method according to claim 1 , wherein the terminal further determines the first parameter based on a size of the frequency domain resource unit. 7. The method according to claim 6 , wherein the size of the frequency domain resource unit is indicated to the terminal by the base station. 8. The method according to claim 6 , wherein the size of the frequency domain resource unit is determined based on at least one of: a sub-band identifier, a frequency band identifier, configuration information of the base station, and a type of the RS. 9. The method according to claim 1 , wherein the terminal further determines the first parameter based on first configuration information of the base station. 10. The method according to claim 9 , wherein the communications system further comprises a third cell; and when the first configuration information configured by the base station does not vary between the first cell and the third cell, for the first cell and the third cell, the first parameter does not vary, and the reference signal has different orthogonal coefficients. 11. The method according to claim 1 , wherein the sequence of the reference signal is a Zadoff-Chu sequence, and the first parameter comprises a root of the ZC sequence; or the sequence of the reference signal is a pseudo random (PN) sequence, and the parameter is an initialized value of the PN sequence. 12. A method comprising: a communications system that comprises: a terminal; and a base station; wherein the method comprises: determining, by the base station, a resource that is to be allocated to the terminal, wherein the resource comprises a frequency domain resource unit; and receiving, by the base station, the reference signal sent by the terminal; or sending, by the base station, the reference signal to the terminal; wherein the reference signal is carried on the frequency domain resource unit, a sequence of the reference signal is determined by a sequence parameter; and, wherein the terminal belongs to a first cell, the first cell includes a first frequency domain resource unit and a second frequency domain resource unit, and the sequence parameter comprises a first parameter and a second parameter, wherein the first parameter is for determining the sequence of the reference signal carried on the first frequency domain resource unit, the second parameter is for determining the sequence of the reference signal carried on the second frequency domain resource unit, and the first parameter is different from the second parameter; the communications system further comprises: a second cell, and the sequence parameter for the frequency domain resource unit varies between the first cell and the second cell, wherein, for the first cell, the first and the second parameters for determining the sequence of the resource signal constitute a first parameter set and for the second cell, a third and a fourth parameters for determining the sequence of the reference signal constitute a second parameter set, wherein the first parameter set is the same as or partially overlaps with the second parameter set; and wherein full bandwidth or a sub-band of the communications system includes n-frequency domain resource units with contiguous frequency domain locations, and n-sequence parameters are successively allocated to the n-frequency domain resource units with contiguous frequency domain locations in an order of a 1+x , . . . , and a (n+x)%n , where X is determined based on identification information of a cell, and % is a remainder operation symbol; or n-sequence parameters are successively allocated to the n-frequency domain resource units with contiguous frequency domain locations in an order of a 1+x , a 2+x , . . . , and a (n+x) , where X is determined based on identification information of a cell. 13. The method according to claim 12 , wherein one or more frequency domain resource units are used to carry the reference signal on full bandwidth or a sub-band.
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