Method for generating HARQ-ACK codebook in wireless communication system and device using same
View Patent ↗Disclosed is a base station in a wireless communication system. Each base station in wireless communication comprises: a communication module; and a processor. The processor generates a hybrid automatic repeat request (HARQ)-ACK codebook comprising one or more bits and indicating whether or not reception of a channel or signal is successful, and transmits the HARQ-ACK codebook to the base station.
1. A user equipment for use in a 3rd generation partnership project (3GPP)-based wireless communication system, the user equipment comprising:
a communication module; and
a processor configured to control the communication module,
wherein the processor is configured to:
receive a plurality of physical downlink control channels (PDCCHs), wherein each of the plurality of PDCCHs is associated with a respective reception time and a respective cell index; and
transmit a hybrid automatic repeat request acknowledgement (HARQ-ACK) codebook on a physical uplink control channel (PUCCH) resource associated with a last PDCCH among the plurality of the PDCCHs,
wherein the plurality of the PDCCHs is ordered based on a reception time and a cell index associated with each of the plurality of the PDCCHs, and
wherein, among the plurality of PDCCHs, at least two PDCCHs associated with a same reception time and a same cell index are ordered further based on a control resource set (CORESET) index associated with each of the at least two PDCCHs.
2. The user equipment of claim 1 , wherein the same reception time and the same cell index includes a same latest reception time and a same highest cell index, and the at least two PDCCHs are ordered in an ascending order of CORESET indexes.
3. The user equipment of claim 1 , wherein the reception time is determined based on a starting symbol of each of the plurality of PDCCHs.
4. The user equipment of claim 1 , wherein each of the plurality of PDCCHs schedules a respective physical downlink shared channel (PDSCH).
5. The user equipment of claim 1 , wherein counter downlink assignment indexes (c-DAIs) in the plurality of PDCCHs are ordered based on the reception time and the cell index associated with each of the plurality of the PDCCHs, and
wherein, at least two c-DAIs in the at least two PDCCHs are ordered further based on CORESET indexes associated with the at least two PDCCHs.
6. A method for use by a user equipment in a 3rd generation partnership project (3GPP)-based wireless communication system, the method comprising:
receiving a plurality of physical downlink control channels (PDCCHs), wherein each of the plurality of PDCCHs is associated with a respective reception time and a respective cell index; and
transmitting a hybrid automatic repeat request acknowledgement (HARQ-ACK) codebook on a physical uplink control channel (PUCCH) resource associated with a last PDCCH among the plurality of the PDCCHs,
wherein the plurality of the PDCCHs is ordered based on a reception time and a cell index associated with each of the plurality of the PDCCHs, and
wherein, among the plurality of PDCCHs, at least two PDCCHs associated with a same reception time and a same cell index are ordered further based on a control resource set (CORESET) index associated with each of the at least two PDCCHs.
7. The method of claim 6 , wherein the same reception time and the same cell index includes a same latest reception time and a same highest cell index, and the at least two PDCCHs are ordered in an ascending order of CORESET indexes.
8. The method of claim 6 , wherein the reception time is determined based on a starting symbol of each of the plurality of PDCCHs.
9. The method of claim 6 , wherein each of the plurality of PDCCHs schedules a respective physical downlink shared channel (PDSCH).
10. The method of claim 6 , wherein counter downlink assignment indexes (c-DAIs) in the plurality of PDCCHs are ordered based on the reception time and the cell index associated with each PDCCH of the plurality of the PDCCHs, and
wherein, at least two c-DAIs in the at least two PDCCHs are ordered further based on CORESET indexes associated with the at least two PDCCHs.
11. A base station for use in a 3rd generation partnership project (3GPP)-based wireless communication system, the base station comprising:
a communication module; and
a processor configured to control the communication module,
wherein the processor is configured to:
transmit a plurality of physical downlink control channels (PDCCHs), wherein each of the plurality of PDCCHs is associated with a respective transmission time and a respective cell index; and
receive a hybrid automatic repeat request acknowledgement (HARQ-ACK) codebook on a physical uplink control channel (PUCCH) resource associated with a last PDCCH among the plurality of the PDCCHs,
wherein the plurality of the PDCCHs is ordered based on a transmission time and a cell index associated with each of the plurality of the PDCCHs, and
wherein, among the plurality of PDCCHs, at least two PDCCHs associated with a same transmission time and a same cell index are ordered further based on a control resource set (CORESET) index associated with each of the at least two PDCCHs.
12. The base station of claim 11 , wherein the same transmission time and the same cell index includes a same latest transmission time and a same highest cell index, and the at least two PDCCHs are ordered in an ascending order of CORESET indexes.
13. The base station of claim 11 , wherein the transmission time is determined based on a starting symbol of each of the plurality of PDCCHs.
14. The base station of claim 11 , wherein each of the plurality of PDCCHs schedules a respective physical downlink shared channel (PDSCH).
15. The base station of claim 11 , wherein counter downlink assignment indexes (c-DAIs) in the plurality of PDCCHs are ordered based on the transmission time and the cell index associated with each of the plurality of the PDCCHs, and
wherein, at least two c-DAIs in the at least two PDCCHs are ordered further based on CORESET indexes associated with the at least two PDCCHs.
16. A method for use by a base station in a 3rd generation partnership project (3GPP)-based wireless communication system, the method comprising:
transmitting a plurality of physical downlink control channels (PDCCHs), wherein each of the plurality of PDCCHs is associated with a respective transmission time and a respective cell index; and
receiving a hybrid automatic repeat request acknowledgement (HARQ-ACK) codebook on a physical uplink control channel (PUCCH) resource associated with a last PDCCH among the plurality of the PDCCHs,
wherein the plurality of the PDCCHs is ordered based on a transmission time and a cell index associated with each of the plurality of the PDCCHs, and
wherein, among the plurality of PDCCHs, at least two PDCCHs associated with a same transmission time and a same cell index are ordered further based on a control resource set (CORESET) index associated with each of the at least two PDCCHs.
17. The method of claim 16 , wherein the same transmission time and the same cell index includes a same latest transmission time and a same highest cell index, and the at least two PDCCHs are ordered in an ascending order of CORESET indexes.
18. The method of claim 16 , wherein the transmission time is determined based on a starting symbol of each of the plurality of PDCCHs.
19. The method of claim 16 , wherein each of the plurality of PDCCHs schedules a respective physical downlink shared channel (PDSCH).
20. The method of claim 16 , wherein counter downlink assignment indexes (c-DAIs) in the plurality of PDCCHs are ordered based on the transmission time and the cell index associated with each of the plurality of the PDCCHs, and
wherein, at least two c-DAIs in the at least two PDCCHs are ordered further based on CORESET indexes associated with the at least two PDCCHs.