Frequency selective precoder indication in wireless communications
Methods, systems, and devices for wireless communications are described in which frequency selective precoding may be used for wireless transmissions. A transmitting device, such as a user equipment (UE), may have a set of allocated resources that include time domain resources and frequency domain resources, and different precoding may be applied to different portions of the frequency domain resources. The different precoding may be indicated in a resource grant that indicates multiple precoders that that are associated with different portions of frequency domain resources, such as different precoders that are associated with different reference signal resources sets that are associated with portions of the frequency domain resources. The indication of multiple precoders may be provided with an uplink grant to a UE that is associated with a single antenna panel at the UE.
1 . A method for wireless communication at a user equipment (UE), comprising:
receiving control information having a resource grant for an uplink communication from the UE to a base station, the uplink communication using a single antenna panel at the UE, wherein the control information allocates frequency resources for the uplink communication, includes a first precoding indication that is associated with a first subset of the frequency resources and a second precoding indication that is associated with a second subset of the frequency resources, and includes a single transmission configuration indication (TCI) state, wherein the control information comprises the single TCI state and both of the first precoding indication and the second precoding indication based at least in part on the uplink communication using the single antenna panel at the UE;
transmitting a first portion of the uplink communication via the first subset of the frequency resources using a first precoder that is based at least in part on the first precoding indication; and
transmitting a second portion of the uplink communication via the second subset of the frequency resources using a second precoder that is based at least in part on the second precoding indication.
2 . The method of claim 1 , further comprising:
receiving configuration information for a first uplink reference signal resource set and a second uplink reference signal resource set, and wherein the first precoding indication is associated with the first uplink reference signal resource set and the second precoding indication is associated with the second uplink reference signal resource set.
3 . The method of claim 2 , wherein the first uplink reference signal resource set is identified by a first sounding reference signal (SRS) resource indicator (SRI) that is provided in the control information and is associated with the first precoding indication, and the second uplink reference signal resource set is identified by a second SRI that is provided in the control information and is associated with the second precoding indication.
4 . The method of claim 2 , wherein the first uplink reference signal resource set and the second uplink reference signal resource set are each configured for codebook-based or non-codebook-based multiple input multiple output (MIMO) communications.
5 . The method of claim 1 , wherein the control information includes a single transmit power command for the uplink communication from the UE to the base station.
6 . The method of claim 1 , wherein the control information includes a single set of power control parameters for the uplink communication from the UE to the base station.
7 . The method of claim 6 , wherein the single set of power control parameters includes one or more of a path loss reference signal, a fractional power control parameter, a nominal transmit power, an index value associated with a power control procedure, or any combinations thereof.
8 . The method of claim 1 , wherein the first subset of the frequency resources is associated with a first frequency hop for the uplink communication, and the second subset of the frequency resources is associated with a second frequency hop for the uplink communication.
9 . The method of claim 8 , wherein the first frequency hop and the second frequency hop are intra-slot frequency hops or inter-slot frequency hops.
10 . The method of claim 8 , wherein the control information includes one or more of a first frequency allocation indication associated with the first frequency hop, a second frequency allocation indication associated with the second frequency hop, a time domain offset value for the second frequency hop, or any combinations thereof.
11 . The method of claim 1 , wherein the frequency resources for the uplink communication span a contiguous set of frequency resources in a same time domain resource.
12 . The method of claim 11 , wherein the first subset of the frequency resources and the second subset of the frequency resources occupy different contiguous portions of the contiguous set of frequency resources.
13 . The method of claim 11 , wherein the first subset of the frequency resources is interleaved with the second subset of the frequency resources within the contiguous set of frequency resources.
14 . A method for wireless communication at a base station, comprising:
allocating a set of resources to a user equipment (UE) for an uplink communication from the UE to the base station, the set of resources including a set of frequency resources and a set of time domain resources, wherein the uplink communication uses a single antenna panel at the UE;
determining a first precoding indication for a first subset of the set of frequency resources, and a second precoding indication for a second subset of the set of frequency resources; and
transmitting, to the UE, control information having a resource grant for the uplink communication from the UE, wherein the control information allocates the set of frequency resources for the uplink communication, includes the first precoding indication and the second precoding indication, and includes a single transmission configuration indication (TCI) state, wherein the control information comprises the single TCI state and both of the first precoding indication and the second precoding indication based at least in part on the uplink communication using the single antenna panel at the UE.
15 . The method of claim 14 , further comprising:
configuring the UE with a first uplink reference signal resource set and a second uplink reference signal resource set, and wherein the first precoding indication is associated with the first uplink reference signal resource set and the second precoding indication is associated with the second uplink reference signal resource set.
16 . The method of claim 15 , wherein the first uplink reference signal resource set is identified by a first sounding reference signal (SRS) resource indicator (SRI) that is provided in the control information and is associated with the first precoding indication, and the second uplink reference signal resource set is identified by a second SRI that is provided in the control information and is associated with the second precoding indication.
17 . The method of claim 15 , wherein the first uplink reference signal resource set and the second uplink reference signal resource set are each configured for codebook-based or non-codebook-based multiple input multiple output (MIMO) communications.
18 . The method of claim 14 , wherein the control information includes a single transmit power command for the uplink communication from the UE to the base station.
19 . The method of claim 14 , wherein the control information includes a single set of power control parameters for the uplink communication from the UE to the base station.
20 . The method of claim 19 , wherein the single set of power control parameters includes one or more of a path loss reference signal, a fractional power control parameter, a nominal transmit power, an index value associated with a power control procedure, or any combinations thereof.
21 . The method of claim 14 , wherein the first subset of the set of frequency resources is associated with a first frequency hop for the uplink communication, and the second subset of the set of frequency resources is associated with a second frequency hop for the uplink communication.
22 . A user equipment (UE) for wireless communication, comprising:
at least one processor;
at least one memory coupled with the at least one processor; and
instructions stored in the at least one memory and executable by the at least one processor to cause the UE to:
receive control information having a resource grant for an uplink communication from the UE to a network entity, the uplink communication using a single antenna panel at the UE, wherein the control information allocates frequency resources for the uplink communication, includes a first precoding indication that is associated with a first subset of the frequency resources and a second precoding indication that is associated with a second subset of the frequency resources, and includes a single transmission configuration indication (TCI) state, wherein the control information comprises the single TCI state and both of the first precoding indication and the second precoding indication based at least in part on the uplink communication using the single antenna panel at the UE;
transmit a first portion of the uplink communication via the first subset of the frequency resources using a first precoder that is based at least in part on the first precoding indication; and
transmit a second portion of the uplink communication via the second subset of the frequency resources using a second precoder that is based at least in part on the second precoding indication.
23 . The UE of claim 22 , wherein the instructions are further executable by the at least one processor to cause the UE to:
receive configuration information for a first uplink reference signal resource set and a second uplink reference signal resource set, and wherein the first precoding indication is associated with the first uplink reference signal resource set and the second precoding indication is associated with the second uplink reference signal resource set.
24 . The UE of claim 23 , wherein the first uplink reference signal resource set is identified by a first sounding reference signal (SRS) resource indicator (SRI) that is provided in the control information and is associated with the first precoding indication, and the second uplink reference signal resource set is identified by a second SRI that is provided in the control information and is associated with the second precoding indication.
25 . The UE of claim 22 , wherein the control information includes a single transmit power command for the uplink communication from the UE to the network entity, a single set of power control parameters for the uplink communication, or both.
26 . A network entity for wireless communication, comprising:
at least one processor;
at least one memory coupled with the at least one processor; and
instructions stored in the at least one memory and executable by the at least one processor to cause the network entity to:
allocate a set of resources to a user equipment (UE) for an uplink communication from the UE to the network entity, the set of resources including a set of frequency resources and a set of time domain resources, wherein the uplink communication uses a single antenna panel at the UE;
determine a first precoding indication for a first subset of the set of frequency resources, and a second precoding indication for a second subset of the set of frequency resources; and
transmit, to the UE, control information having a resource grant for the uplink communication from the UE, wherein the control information allocates the set of frequency resources for the uplink communication, includes the first precoding indication and the second precoding indication, and includes a single transmission configuration indication (TCI) state, wherein the control information comprises the single TCI state and both of the first precoding indication and the second precoding indication based at least in part on the uplink communication using the single antenna panel at the UE.
27 . The network entity of claim 26 , wherein the instructions are further executable by the at least one processor to cause the network entity to:
configure the UE with a first uplink reference signal resource set and a second uplink reference signal resource set, and wherein the first precoding indication is associated with the first uplink reference signal resource set and the second precoding indication is associated with the second uplink reference signal resource set.
28 . The network entity of claim 26 , wherein the control information includes a single transmit power command for the uplink communication from the UE to the network entity, a single set of power control parameters for the uplink communication from the UE to the network entity, or both.
29 . The network entity of claim 26 , wherein the first subset of the set of frequency resources is associated with a first frequency hop for the uplink communication, and the second subset of the set of frequency resources is associated with a second frequency hop for the uplink communication.
30 . The network entity of claim 27 , wherein the first uplink reference signal resource set is identified by a first sounding reference signal (SRS) resource indicator (SRI) that is provided in the control information and is associated with the first precoding indication, and the second uplink reference signal resource set is identified by a second SRI that is provided in the control information and is associated with the second precoding indication.