Techniques for enhanced measurement gaps using sensing procedures
Methods, systems, and devices for wireless communications are described. A user equipment (UE) may receive control signaling from a serving network entity instructing the UE to predict a signal quality measurement of a neighbor network entity using perception information sensed by the UE. The UE may then transmit a measurement report to the serving network entity indicating a signal quality measurement prediction for the neighbor network entity based on the control signaling and the perception information sensed by the UE.
1 . A user equipment (UE), comprising:
one or more memories storing processor-executable code; and
one or more processors coupled with the one or more memories and individually or collectively operable to execute the code to cause the UE to:
receive, from a serving network entity, an indication of a configuration of a set of measurement gaps for performing signal quality measurements of a neighbor network entity:
receive, from the serving network entity, control signaling instructing the UE to predict a signal quality measurement of the neighbor network entity using perception information sensed by the UE instead of performing a measurement of the neighbor network entity during a measurement gap of the set of measurement gaps;
transmit, to the serving network entity, a measurement report indicating a signal quality measurement prediction for the neighbor network entity based at least in part on the control signaling, the perception information sensed by the UE, and an overlap of a first resource allocated for transmission of a data message and a second resource allocated for the measurement gap; and
transmit the data message via the first resource.
2 . The UE of claim 1 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the UE to:
transmit, to the serving network entity, a capability message indicating a capability to predict signal quality measurements using the perception information sensed by the UE,
wherein the control signaling is based at least in part on the capability message.
3 . The UE of claim 1 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the UE to:
transmit, to the serving network entity, a request message to change a periodicity of the measurement gaps within the set of measurement gaps; and
receive, from the serving network entity, an updated configuration of the set of measurement gaps, the updated configuration being in accordance with the change in the periodicity indicated via the request message.
4 . The UE of claim 3 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the UE to:
receive, from the serving network entity, a control message indicating a signal quality threshold,
wherein the request message to change the periodicity of the measurement gaps within the set of measurement gaps is based at least in part on a signal quality measurement of the neighbor network entity satisfying the signal quality threshold.
5 . The UE of claim 3 , wherein, to transmit the request message, the one or more processors are individually or collectively further operable to execute the code to cause the UE to:
receive, from the serving network entity, a control message indicating a signal quality threshold,
wherein the request message to change the periodicity of the measurement gaps within the set of measurement gaps is based at least in part on the signal quality measurement prediction for the neighbor network entity failing to satisfy the signal quality threshold.
6 . The UE of claim 1 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the UE to refrain from performing a measurement during at least one measurement gap of the set of measurement gaps based at least in part on the control signaling.
7 . The UE of claim 1 , wherein the signal quality measurement prediction is based at least in part on a spatial map of an environment.
8 . The UE of claim 7 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the UE to:
generate the spatial map of the environment by performing signal quality measurements during a set of signal quality measurements:
transmit, to the serving network entity, a message indicating that the spatial map of the environment is generated,
wherein receiving the control signaling is based at least in part on the message.
9 . The UE of claim 7 , wherein the spatial map of the environment is generated using a machine learning model.
10 . A network entity, comprising:
one or more memories storing processor-executable code; and
one or more processors coupled with the one or more memories and individually or collectively operable to execute the code to cause the network entity to:
transmit, to a user equipment (UE), an indication of a configuration of a set of measurement gaps for performing signal quality measurements of a neighbor network entity;
receive, from the UE, a request message to change a periodicity of the measurement gaps within the set of measurement gaps;
transmit, to the UE, an updated configuration of the set of measurement gaps, the updated configuration being in accordance with the change in the periodicity indicated via the request message;
transmit, to the UE, control signaling instructing the UE to predict a signal quality measurement of the neighbor network entity using perception information sensed by the UE; and
receive, from the UE, a measurement report indicating a signal quality measurement prediction for the neighbor network entity based at least in part on the control signaling and the perception information sensed by the UE.
11 . The network entity of claim 10 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the network entity to:
receive, from the UE, a capability message indicating a capability to predict signal quality measurements using the perception information sensed by the UE, wherein the control signaling is based at least in part on the capability message.
12 . The network entity of claim 10 ,
wherein the control signaling instructs the UE to predict the signal quality measurement of the neighbor network entity using the perception information instead of performing a measurement of the neighbor network entity during a measurement gap of the set of measurement gaps.
13 . The network entity of claim 12 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the UE to:
receive, from the UE, the measurement report indicating the signal quality measurement prediction based at least in part on an overlap of a first resource allocated for transmission of a data message and a second resource allocated for the measurement gap; and
transmit, the data message via the first resource.
14 . The network entity of claim 12 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the network entity to:
receive, from the UE, a report indicating that the UE is going to skip performing a measurement during a measurement gap based at least in part on an overlap of a first resource allocated for reception of a data message and a second resource allocated for the measurement gap,
wherein the control signaling instructing the UE to predict the signal quality measurement of the neighbor network entity using the perception information sensed by the UE is based at least in part on the report; and
receive the data message via the first resource.
15 . The network entity of claim 10 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the network entity to:
transmit, to the UE, a control message indicating a signal quality threshold,
wherein the request message to change the periodicity of the measurement gaps within the set of measurement gaps is based at least in part on a signal quality measurement of the neighbor network entity satisfying the signal quality threshold.
16 . The network entity of claim 10 , wherein, to transmit the request message, the one or more processors are individually or collectively further operable to execute the code to cause the network entity to:
transmit, to the UE, a control message indicating a signal quality threshold,
wherein the request message to change the periodicity of the measurement gaps within the set of measurement gaps is based at least in part on the signal quality measurement prediction for the neighbor network entity failing to satisfy the signal quality threshold.
17 . The network entity of claim 10 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the network entity to:
receive, from the UE, a message indicating that the UE has generated spatial map of an environment,
wherein transmitting the control signaling is based at least in part on the message.
18 . A method for wireless communications by a user equipment (UE), comprising:
receiving, from a serving network entity, an indication of a configuration of a set of measurement gaps for performing signal quality measurements of a neighbor network entity;
transmitting, to the serving network entity, a request message to change a periodicity of the measurement gaps within the set of measurement gaps;
receiving, from the serving network entity, an updated configuration of the set of measurement gaps, the updated configuration being in accordance with the change in the periodicity indicated via the request message;
receiving, from the serving network entity, control signaling instructing the UE to predict a signal quality measurement of the neighbor network entity using perception information sensed by the UE; and
transmitting, to the serving network entity, a measurement report indicating a signal quality measurement prediction for the neighbor network entity based at least in part on the control signaling and the perception information sensed by the UE.
19 . The method of claim 18 , further comprising:
transmitting, to the serving network entity, a capability message indicating a capability to predict signal quality measurements using the perception information sensed by the UE,
wherein the control signaling is based at least in part on the capability message.
20 . The method of claim 18 ,
wherein the control signaling instructs the UE to predict the signal quality measurement of the neighbor network entity using the perception information instead of performing a measurement of the neighbor network entity during a measurement gap of the set of measurement gaps.
21 . The method of claim 18 , wherein the signal quality measurement prediction is based at least in part on a spatial map of an environment.
22 . A method for wireless communications by a network entity, comprising:
transmitting, to a user equipment (UE), an indication of a configuration of a set of measurement gaps for the UE to perform signal quality measurements of a neighbor network entity,
transmitting, to the UE, control signaling instructing the UE to predict a signal quality measurement of the neighbor network entity using perception information sensed by the UE instead of performing a measurement of the neighbor network entity during a measurement gap of the set of measurement gaps; and
receiving, from the UE, a measurement report indicating a signal quality measurement prediction for the neighbor network entity based at least in part on the control signaling, the perception information sensed by the UE, and an overlap of a first resource allocated for transmission of a data message and a second resource allocated for the measurement gap; and
transmitting, the data message via the first resource.
23 . The method of claim 22 , further comprising:
receiving, from the UE, a capability message indicating a capability to predict signal quality measurements using the perception information sensed by the UE,
wherein the control signaling is based at least in part on the capability message.
24 . The method of claim 22 , further comprising:
receiving, from the UE, a message indicating that the UE has generated spatial map of an environment,
wherein transmitting the control signaling is based at least in part on the message.