Aligned downlink control channel reception in multi-downlink control information multi-transmission reception point scenarios
Methods, systems, and devices for wireless communication are described. A user equipment (UE) receives physical downlink control channels from transmission and reception points (TRPs). The physical downlink control channels may be jointly decoded to facilitate joint demodulation of physical shared channels. The UE receives a first downlink control information (DCI) over a first downlink control channel associated with a first TRP and a second DCI over a second downlink control channel associated with a second TRP. The first downlink control channel overlaps in time with the second downlink control channel. The first DCI schedules a first downlink shared channel associated with the first TRP and the second DCI schedules a second downlink shared channel associated with the second TRP. The UE receives the first downlink shared channel and the second downlink shared channel that overlap in time. The UE performs joint demodulation of the first and second downlink shared channels.
1 . A method for wireless communication at a user equipment (UE), comprising:
receiving, in accordance with a capability of the UE to receive downlink control channels that at least partially overlap in time and that are associated with scheduling downlink shared channels that at least partially overlap in time, first downlink control information over a first downlink control channel associated with a first transmission and reception point, and second downlink control information over a second downlink control channel associated with a second transmission and reception point, the first downlink control channel at least partially overlapping in time with the second downlink control channel, the first downlink control information scheduling a first downlink shared channel associated with the first transmission and reception point, and the second downlink control information scheduling a second downlink shared channel associated with the second transmission and reception point, the receiving comprising:
monitoring a first search space set for the first downlink control channel and a second search space set for the second downlink control channel, the first search space set associated with a first control resource set and the second search space set associated with a second control resource set, and the first downlink shared channel and the second downlink shared channel associated with a same time offset;
receiving the first downlink shared channel associated with the first transmission and reception point in accordance with the first downlink control information and the second downlink shared channel associated with the second transmission and reception point in accordance with the second downlink control information, the first downlink shared channel at least partially overlapping with the second downlink shared channel in time; and
performing joint demodulation of the first downlink shared channel and the second downlink shared channel.
2 . The method of claim 1 , wherein
the first control resource set has a same duration as the second control resource set, wherein the first search space set and the second search space set have a same slot periodicity and slot offset, and wherein the first search space set and the second search space set have a same monitoring symbol within each slot.
3 . The method of claim 2 , wherein the first search space set and the second search space set completely align in time.
4 . The method of claim 1 , wherein
the first control resource set has a different duration than the second control resource set associated with the second search space set, and wherein the first search space set and the second search space set have a same slot periodicity and slot offset.
5 . The method of claim 4 , wherein each slot of the first search space set and each slot of the second search space set includes a single monitoring symbol in a same downlink control channel monitoring occasion.
6 . The method of claim 4 , wherein a last orthogonal frequency division multiplexing symbol of the first downlink control information is within a threshold symbol quantity of a last orthogonal frequency division multiplexing symbol of the second downlink control information.
7 . The method of claim 1 , wherein
the first control resource set has a different duration than the second control resource set, and wherein the first search space set and the second search space set have a different slot periodicity.
8 . The method of claim 7 , wherein at least one monitoring symbol of the first search space set at least partially overlaps in time with at least one monitoring symbol of the second search space set.
9 . The method of claim 1 , further comprising transmitting, to a network entity associated with the first transmission and reception point and the second transmission and reception point, signaling indicative of the capability of the UE.
10 . The method of claim 1 , wherein the first downlink shared channel and the second downlink shared channel completely align in time and frequency.
11 . The method of claim 1 , wherein the first downlink shared channel is received via a first set of frequency resources and the second downlink shared channel is received via a second set of frequency resources different than the first set of frequency resources.
12 . The method of claim 1 , wherein the first downlink shared channel and the second downlink shared channel partially overlap in frequency.
13 . A method for wireless communication at a network entity, comprising:
transmitting, to a user equipment (UE), and in accordance with capability of the UE to receive downlink control channels that at least partially overlap in time and that are associated with scheduling downlink shared channels that at least partially overlap in time, a first downlink control information via a first transmission and reception point and over a first downlink control channel, and a second downlink control information via a second transmission and reception point and over a second downlink control channel, the first downlink control channel at least partially overlapping in time with the second downlink control channel, the first downlink control information scheduling a first downlink shared channel associated with the first transmission and reception point, the second downlink control information scheduling a second downlink shared channel associated with the second transmission and reception point, the first downlink control channel associated with a first search space set and the second downlink control channel associated with a second search space set, the first search space set associated with a first control resource set and the second search space set associated with a second control resource set, and the first downlink shared channel and the second downlink shared channel associated with a same time offset; and
transmitting, to the UE, the first downlink shared channel via the first transmission and reception point in accordance with the first downlink control information and the second downlink shared channel via the second transmission and reception point in accordance with the second downlink control information.
14 . The method of claim 13 , wherein:
the first control resource set has a same duration as the second control resource set,
the first search space set and the second search space set have a same slot periodicity and slot offset, and
the first search space set and the second search space set have a same monitoring symbol within each slot.
15 . The method of claim 14 , wherein the first search space set and the second search space set completely align in time.
16 . The method of claim 13 , wherein:
the first control resource set has a different duration than the second control resource set, and
the first search space set and the second search space set have a same slot periodicity and slot offset.
17 . The method of claim 16 , wherein each slot of the first search space set and each slot of the second search space set includes a single monitoring symbol in a same downlink control channel monitoring occasion.
18 . The method of claim 16 , wherein a last orthogonal frequency division multiplexing symbol of the first downlink control information is within a threshold symbol quantity of a last orthogonal frequency division multiplexing symbol of the second downlink control information.
19 . The method of claim 13 , wherein:
the first control resource set having has a different duration than the second control resource set, and
the first search space set and the second search space set have a different slot periodicity.
20 . The method of claim 19 , wherein at least one monitoring symbol of the first search space set at least partially overlaps in time with at least one monitoring symbol of the second search space set.
21 . The method of claim 13 , further comprising receiving, from the UE, signaling indicative of the capability of the UE.
22 . The method of claim 13 , wherein the first downlink shared channel and the second downlink shared channel completely align in time and frequency.
23 . The method of claim 13 , wherein the first downlink shared channel is transmitted via a first set of frequency resources and the second downlink shared channel is transmitted via a second set of frequency resources different than the first set of frequency resources.
24 . The method of claim 13 , wherein the first downlink shared channel and the second downlink shared channel partially overlap in frequency.
25 . A user equipment (UE) for wireless communication, comprising:
at least one processor; and
at least one memory coupled with the at least one processor and storing instructions executable by the at least one processor to cause the UE to:
receive, in accordance with a capability of the UE to receive downlink control channels that at least partially overlap in time and that are associated with scheduling downlink shared channels that at least partially overlap in time, first downlink control information over a first downlink control channel associated with a first transmission and reception point, and second downlink control information over a second downlink control channel associated with a second transmission and reception point, the first downlink control channel at least partially overlapping in time with the second downlink control channel, the first downlink control information scheduling a first downlink shared channel associated with the first transmission and reception point, and the second downlink control information scheduling a second downlink shared channel associated with the second transmission and reception point, the instructions to receive executable by the at least one processor to cause the UE to:
monitor a first search space set for the first downlink control channel and a second search space set for the second downlink control channel, the first search space set associated with a first control resource set and the second search space set associated with a second control resource set, and the first downlink shared channel and the second downlink shared channel associated with a same time offset;
receive the first downlink shared channel associated with the first transmission and reception point in accordance with the first downlink control information and the second downlink shared channel associated with the second transmission and reception point in accordance with the second downlink control information, the first downlink shared channel at least partially overlapping with the second downlink shared channel in time; and
perform joint demodulation of the first downlink shared channel and the second downlink shared channel.
26 . The UE of claim 25 , wherein
the first control resource set has a same duration as the second control resource set, wherein the first search space set and the second search space set have a same slot periodicity and slot offset, and wherein the first search space set and the second search space set have a same monitoring symbol within each slot.
27 . The UE of claim 25 , wherein
the first control resource set has a different duration than the second control resource set associated with the second search space set, and wherein the first search space set and the second search space set have a same slot periodicity and slot offset.
28 . A network entity for wireless communication, comprising:
at least one processor; and
at least one memory coupled with the at least one processor and storing instructions executable by the at least one processor to cause the network entity to:
transmit, to a user equipment (UE), and in accordance with capability of the UE to receive downlink control channels that at least partially overlap in time and that are associated with scheduling downlink shared channels that at least partially overlap in time, a first downlink control information via a first transmission and reception point and over a first downlink control channel, and a second downlink control information via a second transmission and reception point and over a second downlink control channel, the first downlink control channel at least partially overlapping in time with the second downlink control channel, the first downlink control information scheduling a first downlink shared channel associated with the first transmission and reception point, the second downlink control information scheduling a second downlink shared channel associated with the second transmission and reception point, the first downlink control channel associated with a first search space set and the second downlink control channel associated with a second search space set, the first search space set associated with a first control resource set and the second search space set associated with a second control resource set, and the first downlink shared channel and the second downlink shared channel associated with a same time offset; and
transmit, to the UE, the first downlink shared channel via the first transmission and reception point in accordance with the first downlink control information and the second downlink shared channel via the second transmission and reception point in accordance with the second downlink control information.
29 . The network entity of claim 28 , wherein:
the first control resource set has a same duration as the second control resource set,
the first search space set and the second search space set have a same slot periodicity and slot offset, and
the first search space set and the second search space set have a same monitoring symbol within each slot.
30 . The network entity of claim 28 , wherein:
the first control resource set has a different duration than the second control resource set, and
the first search space set and the second search space set have a same slot periodicity and slot offset.