Transmission method, user equipment and base station
Abstract
A transmission method, a terminal and a base station are provided, thereby solving the problem that there is no specific method in the 5G system for distinguishing whether one DCI triggers the transmission of data and control information at the same time or triggers the transmission of control information only. The transmission includes receiving DCI, wherein the DCI comprises indication information of N bits, the indication information of N bits is used to indicate whether the DCI triggers transmission of data, and N is an integer greater than or equal to 1; and performing transmission based on the indication information in the DCI.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A transmission method, performed by a terminal, comprising:
receiving downlink control information (DCI), wherein the DCI comprises indication information of N bits, the indication information of N bits is used to indicate whether the DCI triggers transmission of data, and N is an integer greater than or equal to 1; and performing transmission based on the indication information in the DCI.
2 . The transmission method according to claim 1 , wherein the DCI further comprises an aperiodic channel state information (CSI) indication field of X bits, the aperiodic CSI indication field of X bits is used to indicate whether transmission of the aperiodic CSI is triggered, and X is an integer greater than or equal to 1.
3 . The transmission method according to claim 2 , wherein a situation that the aperiodic CSI indication field of X bits indicates that the transmission of the aperiodic CSI is not triggered and a situation that the indication information of N bits indicates that the transmission of the data is not triggered cannot coexist.
4 . The transmission method according to claim 1 , wherein N is 1.
5 . The transmission method according to claim 4 , wherein
when the indication information of 1 bit is 0, it indicates that the transmission of the data is not triggered, and when the indication information of 1 bit is 1, it indicates that the transmission of the data is triggered; or when the indication information of 1 bit is 0, it indicates that transmission of data is triggered, and when the indication information of 1 bit is 1, it indicates that transmission of data is not triggered.
6 . The transmission method according to claim 1 , wherein the DCI is uplink DCI for scheduling uplink transmission;
the step of performing transmission based on the indication information in the DCI comprises: when the uplink DCI triggers the transmission of data, the uplink DCI comprises an aperiodic CSI indication field of X bits, and the aperiodic CSI indication field is set to a state in which transmission of aperiodic CSI is not triggered, sending uplink shared channel (UL-SCH) data information on a physical uplink shared channel (PUSCH) scheduled by the uplink DCI; when the uplink DCI triggers the transmission of data, the uplink DCI includes the aperiodic CSI indication field of X bits, and the aperiodic CSI indication field is set to a state in which the transmission of aperiodic CSI is triggered, sending UL-SCH data information and aperiodic CSI on the PUSCH scheduled by the uplink DCI; and when the uplink DCI does not trigger the transmission of data, the uplink DCI includes the aperiodic CSI indication field of X bits, and the aperiodic CSI indication field is set to a state in which the transmission of aperiodic CSI is triggered, sending the aperiodic CSI on the PUSCH scheduled by the DCI.
7 . The transmission method according to claim 1 , wherein the DCI is downlink DCI for scheduling downlink transmission;
the step of performing transmission based on the indication information in the DCI comprises: when the downlink DCI triggers the transmission of data, receiving downlink data on a physical downlink shared channel (PDSCH) scheduled by the downlink DCI, and determining whether to report aperiodic CSI based on an aperiodic CSI indication field of X bits included in the DCI; and when the downlink DCI does not trigger the transmission of data, the DCI includes an aperiodic CSI indication field of X bits, and the aperiodic CSI indication field is set to a state in which the transmission of aperiodic CSI is triggered, sending the aperiodic CSI on a physical uplink control channel (PUCCH) scheduled by the downlink DCI.
8 . The transmission method according to claim 7 , wherein the step of determining whether to report aperiodic CSI based on an aperiodic CSI indication field of X bits included in the DCI comprises:
when the aperiodic CSI indication field instructs to report the aperiodic CSI, reporting the aperiodic CSI and feedback information of a hybrid automatic repeat request (HARD) corresponding to the PDSCH scheduled by the downlink DCI.
9 . A transmission method, performed by a base station, comprising:
sending downlink control information (DCI), wherein the DCI comprises indication information of N bits, the indication information of N bits is used to indicate whether the DCI triggers transmission of data, and N is an integer greater than or equal to 1; and performing transmission based on the indication information in the DCI.
10 . The transmission method according to claim 9 , wherein the DCI further comprises an aperiodic channel state information (CSI) indication field of X bits, the aperiodic CSI indication field of X bits is used to indicate whether transmission of the aperiodic CSI is triggered, and X is an integer greater than or equal to 1.
11 . The transmission method according to claim 10 , wherein a situation that the aperiodic CSI indication field of X bits indicates that the transmission of the aperiodic CSI is not triggered and a situation that the indication information of N bits indicates that the transmission of the data is not triggered cannot coexist.
12 . The transmission method according to claim 9 , wherein N is 1.
13 . The transmission method according to claim 12 , wherein
when the indication information of 1 bit is 0, it indicates that the transmission of the data is not triggered, and when the indication information of 1 bit is 1, it indicates that the transmission of the data is triggered; or when the indication information of 1 bit is 0, it indicates that transmission of data is triggered, and when the indication information of 1 bit is 1, it indicates that transmission of data is not triggered.
14 . The transmission method according to claim 9 , wherein the DCI is uplink DCI for scheduling uplink transmission;
the step of performing transmission based on the indication information in the DCI comprises: when the uplink DCI triggers the transmission of data, the uplink DCI comprises an aperiodic CSI indication field of X bits, and the aperiodic CSI indication field is set to a state in which transmission of aperiodic CSI is not triggered, receiving uplink shared channel (UL-SCH) data information on a physical uplink shared channel (PUSCH) scheduled by the uplink DCI; when the uplink DCI triggers the transmission of data, the uplink DCI includes the aperiodic CSI indication field of X bits, and the aperiodic CSI indication field is set to a state in which the transmission of aperiodic CSI is triggered, receiving UL-SCH data information and aperiodic CSI on the PUSCH scheduled by the uplink DCI; and when the uplink DCI does not trigger the transmission of data, the uplink DCI includes the aperiodic CSI indication field of X bits, and the aperiodic CSI indication field is set to a state in which the transmission of aperiodic CSI is triggered, receiving the aperiodic CSI on the PUSCH scheduled by the DCI.
15 . The transmission method according to claim 9 , wherein the DCI is downlink DCI for scheduling downlink transmission;
the step of performing transmission based on the indication information in the DCI comprises: when the downlink DCI triggers the transmission of data, sending downlink data on a physical downlink shared channel (PDSCH) scheduled by the downlink DCI; and when the downlink DCI does not trigger the transmission of data, the DCI includes an aperiodic CSI indication field of X bits, and the aperiodic CSI indication field is set to a state in which the transmission of aperiodic CSI is triggered, receiving the aperiodic CSI on a physical uplink control channel (PUCCH) scheduled by the downlink DCI.
16 . A base station comprising a transceiver, a memory, a processor, and a program stored on the memory and executed by the processor, when executing the program, the processor implements the transmission method according to claim 9 .
17 . The base station according to claim 19 , wherein the DCI further comprises an aperiodic channel state information (CSI) indication field of X bits, the aperiodic CSI indication field of X bits is used to indicate whether transmission of the aperiodic CSI is triggered, and X is an integer greater than or equal to 1.
18 . A terminal comprising a transceiver, a memory, a processor, and a program stored on the memory and executed by the processor, to implement the steps of:
receiving downlink control information (DCI) by the transceiver, wherein the DCI comprises indication information of N bits, the indication information of N bits is used to indicate whether the DCI triggers transmission of data, and N is an integer greater than or equal to 1; and performing transmission based on the indication information in the DCI.
19 . The terminal according to claim 18 , wherein the DCI further comprises an aperiodic channel state information (CSI) indication field of X bits, the aperiodic CSI indication field of X bits is used to indicate whether transmission of the aperiodic CSI is triggered, and X is an integer greater than or equal to 1.
20 . The terminal according to claim 19 , wherein a situation that the aperiodic CSI indication field of X bits indicates that the transmission of the aperiodic CSI is not triggered and a situation that the indication information of N bits indicates that the transmission of the data is not triggered cannot coexist.Join the waitlist — get patent alerts
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