User equipment, base station and wireless communication method
View Patent ↗Provided are a user equipment, a base station and wireless communication methods related to physical resource configuration for sidelink communication in NR. A user equipment comprises: circuitry which, in operation, determines a Transmission Time Interval (TTI) assigned for transmitting and/or receiving a physical sidelink channel in a carrier; and a transceiver which, in operation, transmits and/or receives the physical sidelink channel based on the TTI in the carrier, wherein the duration of the TTI is less than a slot duration.
1. A communication apparatus, comprising:
circuitry, which, in operation, determines consecutive symbols used for a sidelink communication within a slot; and
a transmitter, which, in operation, transmits a physical sidelink shared channel (PSSCH) in the consecutive symbols within the slot, wherein
a number of symbols of the consecutive symbols is less than a number of symbols within the slot,
in response to the number of symbols of the consecutive symbols being 8, a second symbol and a sixth symbol of the consecutive symbols are used for demodulation reference signals (DMRSs),
the number of symbols of the consecutive symbols is more than a number of consecutive symbols used for a transmission of a physical sidelink control channel (PSCCH) within the slot,
the PSSCH and the PSCCH are assigned in a frequency division multiplexing (FDM) manner, and
a first part of a frequency band is used for the PSCCH, a second part of the frequency band, different from the first part of the frequency band, is used for the PSSCH, and the first part of the frequency band is used for the PSSCH after the consecutive symbols used for the transmission of the PSCCH.
2. The communication apparatus according to claim 1 , wherein a symbol next to a last symbol of the consecutive symbols is a guard period.
3. The communication apparatus according to claim 1 , wherein the number of symbols of the consecutive symbols is more than one symbol.
4. The communication apparatus according to claim 1 , wherein a first symbol of the slot is not used for a DMRS irrespective of the number of symbols of the consecutive symbols.
5. The communication apparatus according to claim 1 , wherein in response to the number of symbols of the consecutive symbols becoming smaller, fewer symbols are used for the DMRSs.
6. The communication apparatus according to claim 5 , wherein a second symbol of the slot is used for a DMRS in a case the number of symbols of the consecutive symbols is less than a threshold.
7. The communication apparatus according to claim 1 , wherein a second symbol of the slot is used for a DMRS in a case the number of symbols of the consecutive symbols is less than a threshold.
8. The communication apparatus according to claim 1 , wherein the number of symbols of the consecutive symbols is selected from a plurality of numbers of symbols.
9. The communication apparatus according to claim 1 , wherein in response to the number of symbols of the consecutive symbols being less than 8 symbols, a second symbol of the slot is used for the DMRSs.
10. A communication method, comprising:
determining consecutive symbols used for a sidelink communication within a slot; and
transmitting a physical sidelink shared channel (PSSCH) in the consecutive symbols within the slot, wherein
a number of symbols of the consecutive symbols is less than a number of symbols within the slot,
in response to the number of symbols of the consecutive symbols being 8, a second symbol and a sixth symbol of the consecutive symbols are used for demodulation reference signals (DMRSs),
the number of symbols of the consecutive symbols is more than a number of consecutive symbols used for a transmission of a physical sidelink control channel (PSCCH) within the slot,
the PSSCH and the PSCCH are assigned in a frequency division multiplexing (FDM) manner, and
a first part of a frequency band is used for the PSCCH, a second part of the frequency band, different from the first part of the frequency band, is used for the PSSCH, and the first part of the frequency band is used for the PSSCH after the consecutive symbols used for the transmission of the PSCCH.
11. The communication method according to claim 10 , wherein a symbol next to a last symbol of the consecutive symbols is a guard period.
12. The communication method according to claim 10 , wherein the number of symbols of the consecutive symbols is more than one symbol.
13. The communication method according to claim 10 , wherein a first symbol of the slot is not used for a DMRS irrespective of the number of symbols of the consecutive symbols.
14. The communication method according to claim 10 , wherein in response to the number of symbols of the consecutive symbols becoming smaller, fewer symbols are used for the DMRSs.
15. The communication method according to claim 14 , wherein a second symbol of the slot is used for a DMRS in a case the number of symbols of the consecutive symbols is less than a threshold.
16. The communication method according to claim 10 , wherein a second symbol of the slot is used for a DMRS in a case the number of symbols of the consecutive symbols is less than a threshold.
17. The communication method according to claim 10 , wherein the number of symbols of the consecutive symbols is selected from a plurality of numbers of symbols.
18. The communication method according to claim 10 , wherein in response to the number of symbols of the consecutive symbols being less than 8 symbols, a second symbol of the slot is used for the DMRSs.