Method and device for transmitting/receiving signals in wireless communication system
A terminal according to one embodiment of the present disclosure can encode a plurality of UCIs comprising a first UCI and a second UCI which have different priorities, perform resource mapping on the encoded bits of the plurality of UCIs on a single physical uplink channel, and perform uplink transmission on the basis of the resource mapping.
1. A method of transmitting a signal including uplink control information (UCI) by a user equipment (UE) in a wireless communication system, the method comprising:
determining a number of resources for a plurality of UCIs; and
transmitting, based on the determined number of resources, a single physical uplink channel in which the plurality of UCIs are multiplexed,
wherein the determination of the number of resources for the plurality of UCIs comprises a first step of determining a number of hybrid automatic repeat request-acknowledgement (HARQ-ACK) resources and a second step of determining a number of channel state information (CSI)-part 1 resources after the first step, and
wherein, based on that i) the plurality of UCIs include a first UCI with a priority index 0 and a second UCI with a priority index 1, ii) multiplexing of the first UCI with a priority index 0 and the second UCI the priority index 1 is configured, iii) the first UCI includes configured grant (CG)-UCI with the priority index 0, the CG-UCI including a hybrid automatic repeat request (HARQ) process number field, a redundancy version field and a new data indicator field and iv) the second UCI includes an HARQ-ACK with the priority index 1, the UE:
determines a number of resources for the HARQ-ACK with the priority index 1 based on the first step, and
determines a number of resources for the CG-UCI with the priority index 0 based in the second step, by taking the CG-UCI as a CSI-part 1.
2. The method according to claim 1 , wherein the UE obtains encoded bits of the first UCI including the CG-UCI and encoded bits of the second UCI including the HARQ-ACK, respectively.
3. The method according to claim 1 ,
wherein the first UCI further includes a second HARQ-ACK with the priority index 0, and
wherein encoding of the first UCI includes joint encoding of the CG-UCI and the second HARQ-ACK.
4. The method according to claim 1 , wherein the single physical uplink channel has the priority index 0.
5. The method of claim 1 , wherein the single physical uplink channel is a configured grant-physical uplink shared channel (CG-PUSCH) with the priority index 0.
6. The method of claim 1 , wherein joint encoding of the CG-UCI with the priority index 0 and the HARQ-ACK with the priority index 1, is not allowed.
7. The method of claim 6 ,
wherein the CG-UCI is jointly encoded with a specific HARQ-ACK with the priority index 0 , and
wherein the CG-UCI and the HARQ-ACK included in the second UCI are separately encoded.
8. A non-transitory computer-readable medium storing instructions, when executed by a processor, that cause the processor to perform the method of claim 1 .
9. A device for transmitting a signal including uplink control information (UCI) in a wireless communication system, the device comprising:
a memory configured to store instructions; and
a processor configured to perform operations by executing the instructions,
determining a number of resources for a plurality of UCIs; and
transmitting, based on the determined number of resources, a single physical uplink channel in which the plurality of UCIs are multiplexed,
wherein the determination of the number of resources for the plurality of UCIs comprises a first step of determining a number of hybrid automatic repeat request-acknowledgement (HARQ-ACK) resources and a second step of determining a number of channel state information (CSI)-part 1 resources after the first step, and
wherein, based on that i) the plurality of UCIs include a first UCI with a priority index 0 and a second UCI with a priority index 1, ii) multiplexing of the first UCI with the priority index 0 and the second UCI with the priority index 1 is configured, iii) the first UCI includes configured grant (CG)-UCI with the priority index 0, the CG-UCI including a hybrid automatic repeat request (HARQ) process number field, a redundancy version field and a new data indicator field and iv) the second UCI includes an HARQ-ACK with the priority index 1, the processor:
determines a number of resources for the HARQ-ACK with the priority index 1 based on the first step, and
determines a number of resources for the CG-UCI with the priority index 0 based on the second step, by taking the CG-UCI as a CSI-part 1.
10. The device according to claim 9 , further comprising:
a transceiver configured to transmit or receive a wireless signal under control of the processor,
wherein the device is a user equipment (UE) in a wireless communication system.
11. A method of receiving a signal including uplink control information (UCI) by a base station (BS) in a wireless communication system, the method comprising:
determining a number of resources for a plurality of UCIs; and
receiving, based on the determined number of resources, a single physical uplink channel in which the plurality of UCIs are multiplexed,
wherein the determination of the number of resources for the plurality of UCIs comprises a first step of determining a number of hybrid automatic repeat request-acknowledgement (HARQ-ACK) resources and a second step of determining a number of channel state information (CSI)-part 1 resources after the first step, and
wherein, based on that i) the plurality of UCIs include a first UCI with a priority index 0 and a second UCI with a priority index 1, ii) multiplexing of the first UCI with the priority index 0 and the second UCI with the priority index 1 is configured, iii) the first UCI includes configured grant (CG)-UCI with the priority index 0, the CG-UCI including a hybrid automatic repeat request (HARQ) process number field, a redundancy version field and a new data indicator field and iv) the second UCI includes an HARQ-ACK with the priority index 1, the BS:
determines a number of resources for the HARQ-ACK with the priority index 1 based on the first step, and
determines a number of resources for the CG-UCI with the priority index 0 based on the second step, by taking the CG-UCI as a CSI-part 1.
12. A base station for receiving a signal including uplink control information (UCI), the base station comprising:
a transceiver; and
a processor configured to determine a number of resources for a plurality of UCIs, and to receive, based on the determined number of resources, a single physical uplink channel in which the plurality of UCIs are multiplexed,
wherein the determination of the number of resources for the plurality of UCIs comprises a first step of determining a number of hybrid automatic repeat request-acknowledgement (HARQ-ACK) resources and a second step of determining a number of channel state information (CSI)-part 1 resources after the first step, and
wherein the determination of the number of resources for the plurality of UCIs comprises a first step of determining a number of hybrid automatic repeat request-acknowledgement (HARQ-ACK) resources and a second step of determining a number of channel state information (CSI)-part 1 resources after the first step, and
wherein, based on that i) the plurality of UCIs include a first UCI with a priority index 0 and a second UCI with a priority index 1, ii) multiplexing of the first UCI with the priority index 0 and the second UCI with the priority index 1 is configured, iii) the first UCI includes configured grant (CG)-UCI with the priority index 0, the CG-UCI including a hybrid automatic repeat request (HARQ) process number field, a redundancy version field and a new data indicator field and iv) the second UCI includes an HARQ-ACK with the priority index 1, the processor:
determines a number of resources for the HARQ-ACK with the priority index 1 based on the first step, and
determines a number of resources for the CG-UCI with the priority index 0 based on the second step, by taking the CG-UCI as a CSI-part 1.