Joint operation of deferred SPS HARQ-ACK and cell switching
A user equipment (UE) is described. The UE may include receiving circuitry configured to receive a first radio resource control (RRC) message comprising first information used for configuring a Semi-Persistent Scheduling (SPS) physical downlink shared channel (PDSCH) configuration, to receive a second RRC message comprising second information used for configuring that deferring of SPS hybrid automatic repeat request-acknowledgement (HARQ-ACK) is supported, to receive a third RRC message comprising third information used for configuring cell switching (based on semi-static configuration and/or dynamic indication), and to receive, based on a detection of a physical downlink control channel (PDCCH) carrying a downlink control information (DCI) format with cyclic redundancy check (CRC) scrambled by a first radio network identifier (RNTI) for an activation of the SPS PDSCH, the SPS PDSCH transmission. The UE may also include transmitting circuitry configured to transmit HARQ-ACK information and configured to defer the HARQ-ACK information transmission.
1 . A user equipment (UE), comprising:
receiving circuitry configured to receive a first radio resource control (RRC) message comprising first information used for configuring a Semi-Persistent Scheduling (SPS) physical downlink shared channel (PDSCH) configuration,
the receiving circuitry configured to receive a second RRC message comprising second information used for configuring that deferring of SPS hybrid automatic repeat request-acknowledgement (HARQ-ACK) is supported,
the receiving circuitry configured to receive a third RRC message comprising third information used for configuring cell switching based on semi-static configuration and/or dynamic indication, and
the receiving circuitry configured to receive, based on a detection of a physical downlink control channel (PDCCH) carrying a downlink control information (DCI) format with cyclic redundancy check (CRC) scrambled by a first radio network identifier (RNTI) for an activation of the SPS PDSCH, the SPS PDSCH transmission; and
transmitting circuitry configured to transmit HARQ-ACK information based on a decoding of the SPS PDSCH transmission in a first slot/sub-slot in a first cell,
the transmitting circuitry configured to defer the HARQ-ACK information transmission in a second slot/sub-slot in a second cell if cell switching is triggered and the first slot/sub-slot in the first cell is not available.
2 . A base station (gNB), comprising:
transmitting circuitry configured to transmit a first radio resource control (RRC) message comprising first information used for configuring a Semi-Persistent Scheduling (SPS) physical downlink shared channel (PDSCH) configuration,
the transmitting circuitry configured to transmit a second RRC message comprising second information used for configuring that deferring of SPS hybrid automatic repeat request-acknowledgement (HARQ-ACK) is supported,
the transmitting circuitry configured to transmit a third RRC message comprising third information used for configuring cell switching based on semi-static configuration and/or dynamic indication, and
the transmitting circuitry configured to transmit, based on a transmission of a physical downlink control channel (PDCCH) carrying a downlink control information (DCI) format with cyclic redundancy check (CRC) scrambled by a first radio network identifier (RNTI) for an activation of the SPS PDSCH, the SPS PDSCH transmission; and
receiving circuitry configured to receive HARQ-ACK information in a first slot/sub-slot in a first cell,
the receiving circuitry configured to receive a deferred HARQ-ACK information transmission in a second slot/sub-slot in a second cell if cell switching is triggered and the first slot/sub-slot in the first cell is not available.
3 . A method by a user equipment (UE), comprising:
receiving a first radio resource control (RRC) message comprising first information used for configuring a Semi-Persistent Scheduling (SPS) physical downlink shared channel (PDSCH) configuration;
receiving a second RRC message comprising second information used for configuring that deferring of SPS hybrid automatic repeat request-acknowledgement (HARQ-ACK) is supported;
receiving a third RRC message comprising third information used for configuring cell switching based on semi-static configuration and/or dynamic indication;
receiving, based on a detection of a physical downlink control channel (PDCCH) carrying a downlink control information (DCI) format with cyclic redundancy check (CRC) scrambled by a first radio network identifier (RNTI) for an activation of the SPS PDSCH, the SPS PDSCH transmission;
transmitting HARQ-ACK information based on a decoding of the SPS PDSCH transmission in a first slot/sub-slot in a first cell; and
deferring the HARQ-ACK information transmission in a second slot/sub-slot in a second cell if cell switching is triggered and the first slot/sub-slot in the first cell is not available,
determining a joint coding for more than two bits of total payload for deferred SPS HARQ-ACK from the first cell and normal HARQ-ACK on a physical uplink control channel (PUCCH) in the second cell;
determining a PUCCH resource based on the total HARQ-ACK payload from sets of PUCCH resources;
determining a number of physical resource blocks (PRBs) for a PUCCH transmission based on the total HARQ-ACK payload and a maxCodeRate on the selected PUCCH resource;
multiplexing the deferred SPS HARQ-ACK and the normal HARQ-ACK based on the determined joint coding; and
transmitting the multiplexed HARQ-ACK on the PUCCH;
wherein the deferred SPS HARQ-ACK from the first cell and the normal HARQ-ACK in the second cell are concatenated into a single joint HARQ-ACK codebook for the PUCCH transmission;
wherein if the total HARQ-ACK payload exceeds a maximum payload size of all configured sets of HARQ-ACK PUCCH resources, the method comprises:
transmitting the deferred SPS HARQ-ACK on a normal PUCCH based on a payload of the normal HARQ-ACK; and
dropping the normal HARQ-ACK codebook.