Method for transmitting uplink control information, communication apparatus, and related device
The technology of this application relates to a method for transmitting uplink control information. The method includes a network device sending first signaling in a first cell to a terminal device. The terminal device may send uplink control information in a second cell based on the first signaling. The uplink control information may be uplink control information corresponding to the first cell and/or uplink control information corresponding to a third cell. The third cell is a cell other than the first cell and the second cell. According to the method provided in this application, a cell for sending the uplink control information may be dynamically configured for the terminal device, and can improve communication efficiency.
1 . A communication apparatus, comprising:
a processor; and
a transceiver, wherein
the processor is configured to control the transceiver to send first signaling in a first cell to a terminal device,
the first signaling indicates a second cell in which the terminal device sends uplink control information,
the uplink control information corresponds to the first cell and a third cell, in a cross-carrier scheduling scenario,
the third cell is different from the first cell and the second cell, and
the processor is further configured to control the transceiver to receive the uplink control information in the second cell.
2 . The communication apparatus according to claim 1 , wherein
the first cell is included in a first cell group,
the second cell is included in a second cell group,
the first signaling includes an identifier of the second cell group, and
the second cell is a default cell configured in the second cell group for sending the uplink control information.
3 . The communication apparatus according to claim 1 , wherein
the first cell is included in a first cell group, and the first cell group is included in at least two cell groups,
a default cell used by the terminal device to send the uplink control information is configured in each of the at least two cell groups,
the first signaling includes a first indication, and the first indication indicates the terminal device to send the uplink control information in the first cell group, and
the second cell is a default cell configured in the first cell group for sending the uplink control information, or
the first indication indicates the terminal device to send the uplink control information in a cell group other than the first cell group, and the second cell is a default cell configured in the cell group other than the first cell group for sending the uplink control information.
4 . The communication apparatus according to claim 1 , wherein
the first cell is included in a first cell group,
the first cell group is one of M cell groups,
the M cell groups comprise N cell pairs,
one cell pair comprises two cell groups in the M cell groups,
M is an integer greater than 2, and N is an integer greater than 1, and
the first signaling comprises a second indication indicating the terminal device to send the uplink control information in the first cell group, and the second cell is a default cell configured in the first cell group for sending the uplink control information, or
the second indication indicates the terminal device to send the uplink control information in another cell group in a cell pair to which the first cell group belongs, and the second cell is a default cell configured in the another cell group for sending the uplink control information.
5 . The communication apparatus according to claim 1 , wherein
the second cell includes at least two active bandwidth parts (BWP),
the first signaling further includes a BWP identifier, and
the BWP identifier indicates a BWP in the at least two active BWPs of the second cell and the BWP is for sending the uplink control information.
6 . The communication apparatus according to claim 1 , wherein
the processor is further configured to control the transceiver to send second signaling,
the second signaling indicates a first time-frequency resource configured in the second cell for sending the uplink control information, and
the first time-frequency resource is different from an initial time-frequency resource configured in the second cell for sending the uplink control information.
7 . The communication apparatus according to claim 6 , wherein the second signaling is downlink control information (DCI) and/or radio resource control (RRC) signaling, and the first signaling is DCI.
8 . The communication apparatus according to claim 1 , wherein the first signaling includes an identifier of the third cell.
9 . The communication apparatus according to claim 1 , wherein the third cell is included in a first cell group or a second cell group.
10 . The communication apparatus according to claim 1 , wherein
the terminal device monitors a channel associated with the second cell, and
when the channel is detected as being idle, the second cell is configured for the terminal device to send the uplink control information.
11 . The communication apparatus according to claim 1 , wherein the first signaling includes downlink control information (DCI), the DCI includes at least a third cell identifier corresponding to the third cell, and the DCI is sent to the terminal device through the first cell.
12 . A communication apparatus, comprising:
a processor; and
a transceiver, wherein
the processor is configured to control the transceiver to receive first signaling in a first cell,
the first signaling indicates a second cell in which the communication apparatus sends uplink control information,
the uplink control information corresponds to the first cell and a third cell, in a cross-carrier scheduling scenario,
the third cell is different than the first cell and the second cell, and
the processor is further configured to control the transceiver to send the uplink control information in the second cell.
13 . The communication apparatus according to claim 12 , wherein
the first cell is included in a first cell group,
the second cell is included in a second cell group,
the first signaling includes an identifier of the second cell group, and
the second cell is configured in the second cell group for sending the uplink control information.
14 . The communication apparatus according to claim 12 , wherein
the first cell is included in a first cell group, and the first cell group is in at least two cell groups,
a cell used by the communication apparatus to send the uplink control information is configured in each of the at least two cell groups, and
the first signaling includes a first indication indicating the communication apparatus to send the uplink control information in the first cell group, and the second cell is a default cell configured in the first cell group for sending the uplink control information, or
the first indication indicates the communication apparatus to send the uplink control information in a cell group other than the first cell group, and the second cell is a default cell in the cell group other than the second cell group and for sending the uplink control information.
15 . The communication apparatus according to claim 12 , wherein
the first cell is included in a first cell group, and the first cell group is one of M cell groups,
the M cell groups include N cell pairs,
one cell pair includes two cell groups in the M cell groups,
M is an integer greater than 2, and N is an integer greater than 1, and
the first signaling includes a second indication indicating the communication apparatus to send the uplink control information in the first cell group, and the second cell is a default cell configured in the first cell group for sending the uplink control information, or
the second indication indicates the communication apparatus to send the uplink control information in another cell group in a cell pair to which the first cell group belongs, and the second cell is a default cell configured in the another cell group for sending the uplink control information.
16 . The communication apparatus according to claim 12 , wherein
the second cell includes at least two active bandwidth parts (BWP),
the first signaling further includes a BWP identifier, and
the BWP identifier indicates a BWP in the at least two active BWPs of the second cell and the BWP is for sending the uplink control information.
17 . The communication apparatus according to claim 12 , wherein
the processor is further configured to control the transceiver to receive second signaling,
the second signaling indicates a first time-frequency resource configured in the second cell for sending the uplink control information,
the first time-frequency resource is different from an initial time-frequency resource configured in the second cell for sending the uplink control information,
the second signaling is downlink control information (DCI) and/or radio resource control (RRC) signaling, and
the first signaling is DCI.
18 . The communication apparatus according to claim 12 , wherein the first signaling includes an identifier of the third cell.
19 . The communication apparatus according to claim 12 , wherein the third cell is included in a second cell group.
20 . The communication apparatus according to claim 12 , wherein the processor is further configured to control the transceiver to monitor a channel and send the uplink control information when the channel is detected as being idle.