Method for transmitting/receiving data in wireless communication system, and device therefor
The present specification relates to a method for a base station transmitting/receiving data in a wireless communication system. More specifically, a terminal receives, from the base station, configuration information for configuring a control resource set (CORESET). Then, on the basis of the configuration information, the terminal receives first downlink control information (DCI) and second DCI for generating an ACK/NACK using a dynamic method. The terminal receives, on a resource scheduled by the first DCI, a first physical downlink shared channel (PDSCH) and a second PDSCH, and transmits a first Ack/Nack for the first PDSCH and an Ack/Nack for the second PDSCH.
1. A method of transmitting and receiving data by a user equipment (UE) in a wireless communication system, the method comprising:
receiving system information comprising at least one of a master information block (MB) or a system information block (SIB);
receiving configuration information for configuring a control resource set (CORESET),
wherein a first CORESET and a second CORESET are configured based on the configuration information,
wherein the configuration information includes an index of a CORESET group associated with each CORESET;
receiving first downlink control information (DCI) based on the first CORESET;
receiving second DCI based on the second CORESET;
receiving first Physical Downlink Shared channel (PDSCH) scheduled by the first DCI;
receiving second PDSCH scheduled by the second DCI;
transmitting first Hybrid Automatic Repeat Request-Acknowledgement (HARQ-ACK) information corresponding to the first PDSCH; and
transmitting second HARQ-ACK information corresponding to the second PDSCH,
wherein the method further comprising:
receiving information for determination of a HARQ-ACK codebook,
wherein the first HARQ-ACK information and the second HARQ-ACK information are based on the HARQ-ACK codebook determined by the information,
wherein based on an index of a CORESET group associated with the first CORESET being configured differently from an index of a CORESET group associated with the second CORESET, the first HARQ-ACK information and the second HARQ-ACK information are generated separately, and
wherein the first HARQ-ACK information is associated with the first CORESET and the second HARQ-ACK information is associated with the second CORESET.
2. The method of claim 1 ,
wherein the information for determination of the HARQ-ACK codebook indicates one of a dynamic type or a semi-static type.
3. The method of claim 2 ,
wherein each of the first DCI and the second DCI includes a downlink assignment indicator (DAI) field.
4. The method of claim 3 ,
wherein based on the information indicating the dynamic type, values of the HARQ-ACK codebook are determined as Acknowledgement (Ack) or Negative Acknowledgement (Nack) based on a value of the DAI field included in each DCI.
5. The method of claim 2 ,
wherein the first HARQ-ACK information is transmitted via a first physical uplink control channel (PUCCH) and the second HARQ-ACK information is transmitted via a second PUCCH.
6. The method of claim 5 ,
wherein the first PUCCH and the second PUCCH are transmitted in different resources within a slot.
7. The method of claim 6 ,
wherein a first PUCCH resource is scheduled by the first DCI, and a second PUCCH resource is scheduled by the second DCI.
8. The method of claim 7 ,
wherein the first PDSCH and the second PDSCH are received on overlapped resources in a time domain.
9. The method of claim 2 ,
wherein the first HARQ-ACK information is generated based on the index of the CORESET group associated with the first CORESET, and
wherein the second HARQ-ACK information is generated based on the index of the CORESET group associated with the second CORESET.
10. A user equipment (UE) configured to transmit and receive data in a wireless communication system, the UE comprising:
a transceiver;
at least one processor; and
at least one computer memory operably connectable to the at least one processor and storing instructions that, when executed by the at least one processor, perform operations comprising:
receiving system information comprising at least one of a master information block (MIB) or a system information block (SIB);
receiving configuration information for configuring a control resource set (CORESET),
wherein a first CORESET and a second CORESET are configured based on the configuration information,
wherein the configuration information includes an index of a CORESET group associated with each CORESET;
receiving first downlink control information (DCI) based on the first CORESET;
receiving second DCI based on the second CORESET;
receiving first Physical Downlink Shared channel (PDSCH) scheduled by the first DCI;
receiving second PDSCH scheduled by the second DCI;
transmitting first Hybrid Automatic Repeat Request-Acknowledgement (HARQ-ACK) information corresponding to the first PDSCH; and
transmitting second HARQ-ACK information corresponding to the second PDSCH,
wherein the operations further comprising:
receiving information for determination of a HARQ-ACK codebook,
wherein the first HARQ-ACK information and the second HARQ-ACK information are based on the HARQ-ACK codebook determined by the information,
wherein based on an index of a CORESET group associated with the first CORESET being configured differently from an index of a CORESET group associated with the second CORESET, the first HARQ-ACK information and the second HARQ-ACK information are generated separately, and
wherein the first HARQ-ACK information is associated with the first CORESET and the second HARQ-ACK information is associated with the second CORESET.
11. The UE of claim 10 ,
wherein the information for determination of the HARQ-ACK codebook indicates one of a dynamic type or a semi-static type.
12. The UE of claim 11 ,
wherein each of the first DCI and the second DCI includes a downlink assignment indicator (DAI) field.
13. The UE of claim 12 ,
wherein based on the information indicating the dynamic type, values of the HARQ-ACK codebook are determined as Acknowledgement (Ack) or Negative Acknowledgement (Nack) based on a value of the DAI field included in each DCI.
14. The UE of claim 11 ,
wherein the first HARQ-ACK information is transmitted via a first physical uplink control channel (PUCCH) and the second HARQ-ACK information is transmitted via a second PUCCH.
15. The UE of claim 14 ,
wherein the first PUCCH and the second PUCCH are transmitted in different resources within a slot.
16. The UE of claim 15 ,
wherein a first PUCCH resource is scheduled by the first DCI, and a second PUCCH resource is scheduled by the second DCI.
17. The UE of claim 16 ,
wherein the first PDSCH and the second PDSCH are received on overlapped resources in a time domain.
18. The UE of claim 11 ,
wherein the first HARQ-ACK information is generated based on the index of the CORESET group associated with the first CORESET, and
wherein the second HARQ-ACK information is generated based on the index of the CORESET group associated with the second CORESET.
19. One or more non-transitory computer-readable medium storing one or more instructions, the one or more instructions executable by one ore more processors to cause a user equipment (UE) to:
receive system information comprising at least one of a master information block (MB) or a system information block (SIB);
receive configuration information for configuring a control resource set (CORESET),
wherein a first CORESET and a second CORESET are configured based on the configuration information,
wherein the configuration information includes an index of a CORESET group associated with each CORESET;
receive first downlink control information (DCI) based on the first CORESET;
receive second DCI based on the second CORESET;
receive first Physical Downlink Shared channel (PDSCH) scheduled by the first DCI;
receive second PDSCH scheduled by the second DCI;
transmit first Hybrid Automatic Repeat Request-Acknowledgement (HARQ-ACK) information corresponding to the first PDSCH; and
transmit second HARQ-ACK information corresponding to the second PDSCH,
wherein the one or more instructions to cause the UE further to:
receive information for determination of a HARQ-ACK codebook,
wherein the first HARQ-ACK information and the second HARQ-ACK information are based on the HARQ-ACK codebook determined by the information,
wherein based on an index of a CORESET group associated with the first CORESET being configured differently from an index of a CORESET group associated with the second CORESET, the first HARQ-ACK information and the second HARQ-ACK information are generated separately, and
wherein the first HARQ-ACK information is associated with the first CORESET and the second HARQ-ACK information is associated with the second CORESET.