Spherical coverage requirements with a cost on beam learning
Certain aspects of the present disclosure provide a method for wireless communications at a user equipment (UE). The UE may transmit signaling indicating capability information corresponding to one or more antenna arrays of the UE. The capability information may include a number of the one or more antenna arrays, a number of antennas in each antenna array, and/or a geometric shape of each antenna array. The UE may then receive an indication of a modified performance objective for beamforming. The modified performance objective is based on the capability information and is different from a standard performance objective for the beamforming.
1 . An apparatus for wireless communications at a user equipment (UE), comprising:
one or more memories comprising instructions; and
one or more processors configured, individually or in any combination, to execute the instructions and cause the apparatus to:
transmit signaling indicating capability information to a network entity, wherein the capability information comprises at least antenna information corresponding to one or more antenna arrays of the UE; and
receive an indication from the network entity of a dynamically modified performance objective for beamforming that is different from a standard performance objective, wherein the standard performance objective indicates a first number of reference signals (RSs) required to achieve preferred performances at different percentile levels of a sphere around the UE, wherein the dynamically modified performance objective specifies a second number of RSs determined based on the antenna information that are required to achieve the preferred performances at the different percentile levels of the sphere, and wherein different number of RSs are required to achieve the preferred performances at the different percentile levels of the sphere in accordance with the dynamically modified performance objective.
2 . The apparatus of claim 1 , wherein the antenna information comprises at least one of:
a number of the one or more antenna arrays;
a number of antennas in each of the one or more antenna arrays; or
a geometric shape of each of the one or more antenna arrays.
3 . The apparatus of claim 1 , wherein:
the first number of RSs is different from the second number of RSs;
the standard performance objective comprises a spherical coverage objective of at least one of: effective isotropic radiated power (EIRP) or effective isotropic sensitivity (EIS), at the different percentile levels over the sphere around the UE; and
the dynamically modified performance objective comprises a modified spherical coverage objective at the different percentile levels over the sphere around the UE.
4 . The apparatus of claim 3 , wherein the dynamically modified performance objective indicates different amount of RSs required to achieve the preferred performances at the different percentile levels of the sphere, and wherein a number of RSs needed for realizing a performance at a top end of the sphere is lower than a number of RSs needed for realizing a performance at a tail end of the sphere.
5 . The apparatus of claim 4 , wherein:
the different amount of RSs comprise a third number of RSs for a first percentile level and a fourth number of RSs for a second percentile level;
the first percentile level is higher than the second percentile level; and
the third number of RSs is lower than the fourth number of RSs.
6 . The apparatus of claim 3 , wherein the one or more processors are further configured to execute the instructions and cause the apparatus to receive an indication of a first RS overhead factor required to achieve a preferred performance at a first percentile level of the sphere, wherein the first RS overhead factor is based on the capability information.
7 . The apparatus of claim 6 , wherein the one or more processors are further configured to execute the instructions and cause the apparatus to transmit a response indicating whether the UE is able to achieve the preferred performance at the first percentile level of the sphere, in accordance with the first RS overhead factor.
8 . The apparatus of claim 7 , wherein the response indicates that the UE is not able to achieve the preferred performance at the first percentile level of the sphere, in accordance with the first RS overhead factor.
9 . The apparatus of claim 8 , wherein the response further indicates a second RS overhead factor required to achieve the preferred performance at the first percentile level of the sphere, wherein the second RS overhead factor is different from the first RS overhead factor.
10 . The apparatus of claim 9 , wherein the one or more processors are further configured to execute the instructions and cause the apparatus to receive a configuration of RS resources, based on the second RS overhead factor.
11 . The apparatus of claim 3 , wherein the one or more processors are further configured to execute the instructions and cause the apparatus to transmit an indication of a first RS overhead factor required to achieve a preferred performance at a first percentile level of the sphere, wherein the first RS overhead factor is based on the capability information.
12 . The apparatus of claim 11 , wherein the one or more processors are further configured to execute the instructions and cause the apparatus to receive a configuration of RS resources, based on the first RS overhead factor.
13 . An apparatus for wireless communications at a network entity, comprising:
one or more memories comprising instructions; and
one or more processors configured, individually or in any combination, to execute the instructions and cause the apparatus to:
receive signaling indicating capability information from a user equipment (UE), wherein the capability information comprises at least antenna information corresponding to one or more antenna arrays of the UE; and
transmit, to the UE, an indication of a dynamically modified performance objective for beamforming that is different from a standard performance objective, wherein the standard performance objective indicates a first number of reference signals (RSs) required to achieve preferred performances at different percentile levels of a sphere around the UE, wherein the dynamically modified performance objective specifies a second number of RSs determined based on the antenna information that are required to achieve the preferred performances at the different percentile levels of the sphere, and wherein different number of RSs are required to achieve the preferred performances at the different percentile levels of the sphere in accordance with the dynamically modified performance objective.
14 . The apparatus of claim 13 , wherein the antenna information comprises at least one of:
a number of the one or more antenna arrays;
a number of antennas in each of the one or more antenna arrays; or
a geometric shape of each of the one or more antenna arrays.
15 . The apparatus of claim 13 , wherein:
the first number of RSs is different from the second number of RSs;
the standard performance objective comprises a spherical coverage objective of at least one of: effective isotropic radiated power (EIRP) or effective isotropic sensitivity (EIS), at the different percentile levels over the sphere around the UE; and
the dynamically modified performance objective comprises a modified spherical coverage objective at the different percentile levels over the sphere around the UE.
16 . The apparatus of claim 15 , wherein the dynamically modified performance objective indicates different amount of RSs required to achieve the preferred performances at the different percentile levels of the sphere, and wherein a number of RSs needed for realizing a performance at a top end of the sphere is lower than a number of RSs needed for realizing a performance at a tail end of the sphere.
17 . The apparatus of claim 16 , wherein:
the different amount of RSs comprise a third number of RSs for a first percentile level and a fourth number of RSs for a second percentile level;
the first percentile level is higher than the second percentile level; and
the third number of RSs is lower than the fourth number of RSs.
18 . The apparatus of claim 15 , wherein the one or more processors are further configured to execute the instructions and cause the apparatus to transmit an indication of a first RS overhead factor required to achieve a preferred performance at a first percentile level of the sphere, wherein the first RS overhead factor is based on the capability information.
19 . The apparatus of claim 18 , wherein the one or more processors are further configured to execute the instructions and cause the apparatus to receive a response indicating whether the UE is able to achieve the preferred performance at the first percentile level of the sphere, in accordance with the first RS overhead factor.
20 . The apparatus of claim 19 , wherein the response indicates that the UE is not able to achieve the preferred performance at the first percentile level of the sphere, in accordance with the first RS overhead factor.
21 . The apparatus of claim 20 , wherein the response further indicates a second RS overhead factor required to achieve the preferred performance at the first percentile level of the sphere, wherein the second RS overhead factor is different from the first RS overhead factor.
22 . The apparatus of claim 21 , wherein the one or more processors are further configured to execute the instructions and cause the apparatus to transmit a configuration of RS resources, based on the second RS overhead factor.
23 . The apparatus of claim 15 , wherein the one or more processors are further configured to execute the instructions and cause the apparatus to receive an indication of a first RS overhead factor required to achieve a preferred performance at a first percentile level of the sphere, wherein the first RS overhead factor is based on the capability information.
24 . The apparatus of claim 23 , wherein the one or more processors are further configured to execute the instructions and cause the apparatus to transmit a configuration of RS resources, based on the first RS overhead factor.
25 . A method for wireless communications at a user equipment (UE), comprising:
transmitting signaling indicating capability information to a network entity, wherein the capability information comprises at least antenna information corresponding to one or more antenna arrays of the UE; and
receiving an indication from the network entity of a dynamically modified performance objective for beamforming that is different from a standard performance objective, wherein the standard performance objective indicates a first number of reference signals (RSs) required to achieve preferred performances at different percentile levels of a sphere around the UE, wherein the dynamically modified performance objective specifies a second number of RSs determined based on the antenna information that are required to achieve the preferred performances at the different percentile levels of the sphere, and wherein different number of RSs are required to achieve the preferred performances at the different percentile levels of the sphere in accordance with the dynamically modified performance objective.
26 . The method of claim 25 , wherein the antenna information comprises at least one of:
a number of the one or more antenna arrays;
a number of antennas in each of the one or more antenna arrays; or
a geometric shape of each of the one or more antenna arrays.
27 . The method of claim 25 , wherein:
the first number of RSs is different from the second number of RSs;
the standard performance objective comprises a spherical coverage objective of at least one of: effective isotropic radiated power (EIRP) or effective isotropic sensitivity (EIS), at the different percentile levels over the sphere around the UE; and
the dynamically modified performance objective comprises a modified spherical coverage objective at the different percentile levels over the sphere around the UE.
28 . A method for wireless communications at a network entity, comprising:
receiving signaling indicating capability information from a user equipment (UE), wherein the capability information comprises at least antenna information corresponding to one or more antenna arrays of the UE; and
transmitting, to the UE, an indication of a dynamically modified performance objective for beamforming that is different from a standard performance objective, wherein the standard performance objective indicates a first number of reference signals (RSs) required to achieve preferred performances at different percentile levels of a sphere around the UE, wherein the dynamically modified performance objective specifies a second number of RSs determined based on the antenna information that are required to achieve the preferred performances at the different percentile levels of the sphere, and wherein different number of RSs are required to achieve the preferred performances at the different percentile levels of the sphere in accordance with the dynamically modified performance objective.
29 . The method of claim 28 , wherein the antenna information comprises at least one of:
a number of the one or more antenna arrays;
a number of antennas in each of the one or more antenna arrays; or
a geometric shape of each of the one or more antenna arrays.
30 . The method of claim 28 , wherein:
the first number of RSs is different from the second number of RSs;
the standard performance objective comprises a spherical coverage objective of at least one of: effective isotropic radiated power (EIRP) or effective isotropic sensitivity (EIS), at the different percentile levels over the sphere around the UE; and
the dynamically modified performance objective comprises a modified spherical coverage objective at the different percentile levels over the sphere around the UE.