IP Library › Granted Patent US 11,632,684
Granted Patent B2
US 11,632,684 · App. 16/711,257 · Granted Apr 18, 2023

Systems and methods for robust beam reporting

Inventors: Bo Gao (Guangdong, CN); Yijian Chen (Guangdong, CN); Yu Ngok Li (Guangdong, CN); Zhaohua Lu (Guangdong, CN); Yifei Yuan (Guangdong, CN); Xinhui Wang (Guangdong, CN)
Assignee: ZTE CORPORATION
H04W24/10H04B17/318H04L5/0051H04L5/10H04W72/046
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Quick Facts
Patent No.
US 11,632,684
App. No.
16/711,257
Granted
Apr 18, 2023
Kind
B2
Abstract

A system and method for performing robust beam reporting is disclosed. In one embodiment, a method performed by a first communication node includes: receiving at least one reference signal; determining at least one reference signal received power (RSRP) value associated with the at least one reference signal; generating a RSRP report in accordance with a predetermined format that groups the at least one RSRP value into N sets of RSRP values, each set containing at least one RSRP value, and associates each of the N sets of RSRP values with a respective one of N sets of resource groups, wherein each set of resource groups contains at least one resource group, and N is a positive integer; and transmitting the RSRP report.

Claims (77)

1. A method performed by a first communication node, comprising:

receiving at least one reference signal from a second communication node;

determining at least one reference signal received power (RSRP) value associated with the at least one reference signal;

generating a RSRP report comprising the at least one RSRP value in accordance with a predetermined format,

wherein the predetermined format is selected from at least three different reporting formats each of which corresponds to a respective manner of determining the at least one RSRP value, the at least three different reporting formats comprising:

a first reporting format wherein the at least one RSRP value is determined for each transmitter beam transmitted from the second communication node to the first communication node;

a second reporting format wherein the at least one RSRP value is determined on a per transmitter beam basis as evaluated at the first communication node on a per receiver set basis; and

a third reporting format wherein the at least one RSRP value is determined for all transmitter beams corresponding to a receiver beam set at the first communication node,

wherein one of the at least one RSRP value is associated with a resource group that comprises: a received beam set, a port group, and a reference signal (RS) resource,

wherein the port group is a cluster of ports at the second communication node that is indicated by the second communication node by an explicit signal; and

transmitting the RSRP report to the second communication node.

2. The method of claim 1 , wherein the resource group further comprises at least one of: an antenna group, a RS resource set, a diversity branch, or a receive branch.

3. The method of claim 1 , further comprising generating an additional RSRP report comprising one or more RSRP values based on one of the following hierarchical associations:

each of the one or more RSRP values is determined for one beam transmitted from the second communication node and for one antenna group associated with the first communication node; or

each of the one or more RSRP values is determined for one beam transmitted from the second communication node and for one antenna group associated with the first communication node and for one received beam set associated with the first communication node.

4. The method of claim 1 , wherein:

the at least one RSRP value is grouped into N sets of RSRP values;

each of the N sets of RSRP values is associated with a respective one of N sets of resource groups;

each of the N sets of resource groups contains at least one resource group; and

N is a positive integer.

5. A method performed by a first communication node, comprising:

sending at least one reference signal to a second communication node; and

receiving, from the second communication node, a reference signal received power (RSRP) report comprising at least one RSRP value associated with the at least one reference signal,

wherein the RSRP report is formatted in accordance with a predetermined format,

wherein the predetermined format is selected from at least three different reporting formats each of which corresponds to a respective manner of determining the at least one RSRP value, the at least three different reporting formats comprising:

a first reporting format wherein the at least one RSRP value is determined for each transmitter beam transmitted from the second communication node to the first communication node;

a second reporting format wherein the at least one RSRP value is determined on a per transmitter beam basis as evaluated at the first communication node on a per receiver set basis; and

a third reporting format wherein the at least one RSRP value is determined for all transmitter beams corresponding to a receiver beam set at the first communication node,

wherein one of the at least one RSRP value is associated with a resource group that comprises: a received beam set, a port group, and a reference signal (RS) resource, and

wherein the port group is a cluster of ports at the first communication node that is indicated to the second communication node by an explicit signal.

6. The method of claim 5 , wherein the resource group further comprises at least one of: an antenna group, a RS resource set, a diversity branch, or a receive branch.

7. The method of claim 5 , further comprising receiving an additional RSRP report, comprising one or more RSRP values, which is generated based on one of the following hierarchical associations:

each of the one or more RSRP values is determined for one beam transmitted from the first communication node and for one antenna group associated with the second communication node; or

each of the one or more RSRP values is determined for one beam transmitted from the first communication node and for one antenna group associated with the second communication node and for one received beam set associated with the second communication node.

8. The method of claim 5 , wherein:

the at least one RSRP value is grouped into N sets of RSRP values;

each of the N sets of RSRP values is associated with a respective one of N sets of resource groups;

each of the N sets of resource groups contains at least one resource group; and

N is a positive integer.

9. A first communication node comprising a processor and a memory, wherein the memory stores at least one instruction that, when executed, causes the processor to:

receive at least one reference signal from a second communication node;

determine at least one reference signal received power (RSRP) value associated with the at least one reference signal;

generate a RSRP report comprising the at least one RSRP value in accordance with a predetermined format,

wherein the predetermined format is selected from at least three different reporting formats each of which corresponds to a respective manner of determining the at least one RSRP value, the at least three different reporting formats comprising:

a first reporting format wherein the at least one RSRP value is determined for each transmitter beam transmitted from the second communication node to the first communication node;

a second reporting format wherein the at least one RSRP value is determined on a per transmitter beam basis as evaluated at the first communication node on a per receiver set basis; and

a third reporting format wherein the at least one RSRP value is determined for all transmitter beams corresponding to a receiver beam set at the first communication node,

wherein one of the at least one RSRP value is associated with a resource group that comprises: a received beam set, a port group, and a reference signal (RS) resource,

wherein the port group is a cluster of ports at the second communication node that is indicated by the second communication node by an explicit signal; and

transmit the RSRP report to the second communication node.

10. The first communication node of claim 9 , wherein the resource group further comprises at least one of: an antenna group, a RS resource set, a diversity branch, or a receive branch.

11. The first communication node of claim 9 , wherein the at least one instruction, when executed, further causes the processor to generate an additional RSRP report comprising one or more RSRP values based on one of the following hierarchical associations:

each of the one or more RSRP values is determined for one beam transmitted from the second communication node and for one antenna group associated with the first communication node; or

each of the one or more RSRP values is determined for one beam transmitted from the second communication node and for one antenna group associated with the first communication node and for one received beam set associated with the first communication node.

12. The first communication node of claim 9 , wherein:

the at least one RSRP value is grouped into N sets of RSRP values;

each of the N sets of RSRP values is associated with a respective one of N sets of resource groups;

each of the N sets of resource groups contains at least one resource group; and

N is a positive integer.

13. A first communication node comprising a processor and a memory, wherein the memory stores at least one instruction that, when executed, causes the processor to:

send at least one reference signal to a second communication node; and

receive, from the second communication node, a reference signal received power (RSRP) report comprising at least one RSRP value associated with the at least one reference signal,

wherein the RSRP report is formatted in accordance with a predetermined format,

wherein the predetermined format is selected from at least three different reporting formats each of which corresponds to a respective manner of determining the at least one RSRP value, the at least three different reporting formats comprising:

a first reporting format wherein the at least one RSRP value is determined for each transmitter beam transmitted from the second communication node to the first communication node;

a second reporting format wherein the at least one RSRP value is determined on a per transmitter beam basis as evaluated at the first communication node on a per receiver set basis; and

a third reporting format wherein the at least one RSRP value is determined for all transmitter beams corresponding to a receiver beam set at the first communication node,

wherein one of the at least one RSRP value is associated with a resource group that comprises: a received beam set, a port group, and a reference signal (RS) resource, and

wherein the port group is a cluster of ports at the first communication node that is indicated to the second communication node by an explicit signal.

14. The first communication node of claim 13 , wherein the resource group further comprises at least one of: an antenna group, a RS resource set, a diversity branch, or a receive branch.

15. The first communication node of claim 13 , wherein the at least one instruction, when executed, further causes the processor to receive an additional RSRP report, comprising one or more RSRP values, which is generated based on one of the following hierarchical associations:

each of the one or more RSRP values is determined for one beam transmitted from the first communication node and for one antenna group associated with the second communication node; or

each of the one or more RSRP values is determined for one beam transmitted from the first communication node and for one antenna group associated with the second communication node and for one received beam set associated with the second communication node.

16. The first communication node of claim 13 , wherein:

the at least one RSRP value is grouped into N sets of RSRP values;

each of the N sets of RSRP values is associated with a respective one of N sets of resource groups;

each of the N sets of resource groups contains at least one resource group; and N is a positive integer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2020
From: GAO, BO; CHEN, YIJIAN; LI, YU NGOK; LU, ZHAOHUA; YUAN, YIFEI; WANG, XINHUI
To: ZTE CORPORATION
Reel/Frame 052369/0797 →
Continuity (2)
Continuation PCTCN2017088773 · Jun 16, 2017
Related Publication 20200120528A1 · Apr 16, 2020