IP Library Patent Application 18111601
Patent Application
App. No. 18/111,601

METHOD AND DEVICE IN NODES USED FOR WIRELESS COMMUNICATION

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Quick Facts
Patent No.
US None
App. No.
18/111,601
Abstract

The present application provides a method and device in a node for wireless communications. A communication node first receives a first reference signal in a first RE set, the first RE set comprises multiple REs, an RS sequence of the first reference signal is a first RS sequence; then transmits a first signal and a second reference signal, the first signal occupies a second RE set, the second RE set comprises multiple REs; the received first reference signal is used to generate the first signal, and each element in at least partial elements in the first RS sequence is mapped to a part of the first signal in at least one RE. The application optimizes the calculation and reporting functions of Channel State Information (CSI) to enable the sharing of computing power among multiple enders, thus optimizing the overall performance of channel feedback in Artificial Intelligence (AI) scenarios.

Claims (30)

1 . A first node for wireless communications, comprising:

a first transceiver, receiving a first reference signal in a first Resource Element (RE) set, the first RE set comprising multiple REs, a Reference Signal (RS) sequence of the first reference signal being a first RS sequence;

a second transceiver, transmitting a first signal and a second reference signal, the first signal occupying a second RE set, the second RE set comprising multiple REs;

wherein the received first reference signal is used to generate the first signal, and each element in at least partial elements in the first RS sequence is mapped to a part of the first signal in at least one RE; small-scale fading experienced by the second reference signal is used to determine small-scale fading experienced by the first signal.

2 . The first node according to claim 1 , wherein the first reference signal comprises Q1 sub-reference signals, Q1 being a positive integer greater than 1, and the Q1 sub-reference signals are respectively transmitted in Q1 RS resources; the part of the first reference signal received only in Q2 RS resource(s) is used to generate the first signal, and the Q2 RS resource(s) is(are) proper subset(s) of the Q1 RS resources.

3 . The first node according to claim 1 , wherein each element of the at least partial elements in the first RS sequence is mapped to multiple REs in the first RE set, and each element of the at least partial elements in the first RS sequence is only mapped to one RE in the second RE set.

4 . The first node according to claim 1 , wherein the at least partial elements in the first RS sequence are mapped into the second RE set in order according to a first criterion; the first criterion comprises frequency domain first and then time domain, or, the first criterion comprises time domain first and then frequency domain.

5 . The first node according to claim 1 , wherein the first transceiver receives a first signaling, and the first signaling is used to indicate the first RE set.

6 . The first node according to claim 1 , wherein the second transceiver receives first Channel State information (CSI); the first signal is used to generate the first CSI.

7 . The first node according to claim 1 , wherein the first transceiver receives a first information block, and the first transceiver transmits a second information block; a receiver of the first signal comprises a second node, and the second node transmits the first information block; the first information block is used to determine the first RE set; the second information block is used to indicate the first RE set; a transmitter of the first reference signal receives the second information block.

8 . The first node according to claim 1 , wherein the first transceiver transmits a third information block; the third information block is used to indicate that computing power of the first node is fully occupied.

9 . A second node for wireless communications, comprising:

a third transceiver, receiving a first signal and a second reference signal, the first signal occupying a second RE set, the second RE set comprising multiple REs;

wherein a transmitter of the first signal comprises a first node, the first node receives a first reference signal in a first RE set, the first RE set comprises multiple REs, and an RS sequence of the first reference signal is a first RS sequence; the first reference signal received by the first node is used to generate the first signal, and each element in at least partial elements in the first RS sequence is mapped to a part of the first signal in at least one RE; small-scale fading experienced by the second reference signal is used to determine small-scale fading experienced by the first signal.

10 . The second node according to claim 9 , wherein the first reference signal comprises Q1 sub-reference signals, Q1 being a positive integer greater than 1, and the Q1 sub-reference signals are respectively transmitted in Q1 RS resources; the part of the first reference signal received only in Q2 RS resource(s) is used to generate the first signal, and the Q2 RS resource(s) is(are) proper subset(s) of the Q1 RS resources.

11 . The second node according to claim 9 , wherein each element of the at least partial elements in the first RS sequence is mapped to multiple REs in the first RE set, and each element of the at least partial elements in the first RS sequence is only mapped to one RE in the second RE set.

12 . The second node according to claim 9 , wherein the at least partial elements in the first RS sequence are mapped into the second RE set in order according to a first criterion; the first criterion comprises frequency domain first and then time domain, or, the first criterion comprises time domain first and then frequency domain

13 . The second node according to claim 9 , wherein the third transceiver transmits a first CSI; the first signal is used to generate the first CSI.

14 . The second node according to claim 9 , comprising:

a first transmitter, transmitting a first information block;

wherein the first node receives the first information block; the first information block is used to determine the first RE set.

15 . The second node according to claim 14 , wherein the first transmitter transmits a fourth information block; the fourth information block is used to indicate that computing power of the second node is not fully occupied.

16 . The second node according to claim 14 , wherein the first transmitter transmits a second signal, and the second signal comprises a second CSI; the first signal and the second reference signal are used together to determine the second CSI, and the second CSI is for channel quality of a radio signal between a transmitter of the first reference signal and the first node.

17 . A method in a first node for wireless communications, comprising:

receiving a first reference signal in a first RE set, the first RE set comprising multiple REs, an RS sequence of the first reference signal being a first RS sequence;

transmitting a first signal and a second reference signal, the first signal occupying a second RE set, the second RE set comprising multiple REs;

wherein the received first reference signal is used to generate the first signal, and each element in at least partial elements in the first RS sequence is mapped to a part of the first signal in at least one RE; small-scale fading experienced by the second reference signal is used to determine small-scale fading experienced by the first signal.

18 . The method in a first node according to claim 17 , wherein the first reference signal comprises Q1 sub-reference signals, Q1 being a positive integer greater than 1, and the Q1 sub-reference signals are respectively transmitted in Q1 RS resources; the part of the first reference signal received only in Q2 RS resource(s) is used to generate the first signal, and the Q2 RS resource(s) is(are) proper subset(s) of the Q1 RS resources.

19 . The method in a first node according to claim 17 , wherein each element of the at least partial elements in the first RS sequence is mapped to multiple REs in the first RE set, and each element of the at least partial elements in the first RS sequence is only mapped to one RE in the second RE set.

20 . The method in a first node according to claim 17 , wherein the at least partial elements in the first RS sequence are mapped into the second RE set in order according to a first criterion; the first criterion comprises frequency domain first and then time domain, or, the first criterion comprises time domain first and then frequency domain.

Assignments (3)
CHANGE OF NAME Recorded Apr 7, 2026
From: APOGEE NETWORKS, LLC
To: APOGEE 5G GLOBAL, LLC
Reel/Frame 075344/0441 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2025
From: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY COMPANY LIMITED
To: APOGEE NETWORKS, LLC
Reel/Frame 070741/0575 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2023
From: JIANG, QI; ZHANG, XIAOBO
To: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY COMPANY LIMITED
Reel/Frame 065491/0111 →