Adaptive Sounding Reference Signal Mapping for Improved Channel Estimation

US2023421414A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2023421414-A1
Application numberUS-202018253014-A
CountryUS
Kind codeA1
Filing dateDec 24, 2020
Priority dateDec 24, 2020
Publication dateDec 28, 2023
Grant date

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  5. First independent claim

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Abstract

Official abstract text for this publication.

The present disclosure describes various aspects of adaptive sounding reference signal mapping that a user equipment (UE) implements to improve channel estimation. In aspects, a set of sounding reference signal (SRS) symbols are generated that include at least first and second SRS symbols. An offset for the second SRS symbol is determined based on a difference between a first radio chain and a second radio chain of the UE. The first and second SRS symbols are then mapped to an antenna port of the first radio chain. The UE transmits the first SRS symbol to a base station via the antenna port of the first radio chain and transmits the second SRS symbol to the base station via the antenna port of the first radio chain while the offset is applied to the first radio chain. By so doing, the UE may improve channel estimation for uplink and/or downlink communications.

First claim

Opening claim text (preview).

1 . A method for sounding reference signal mapping performed by a user equipment (UE) to improve channel estimation, the method comprising: generating a set of sounding reference signal (SRS) symbols that include at least a first SRS symbol and a second SRS symbol; determining, for the second SRS symbol, an offset based on a difference between a first radio chain of the UE and a second radio chain of the UE; mapping the first SRS symbol to an antenna port of the first radio chain; mapping the second SRS symbol to the antenna port of the first radio chain; transmitting, to a base station, the first SRS symbol via the antenna port of the first radio chain; applying the offset for the second SRS symbol to the first radio chain; transmitting, to the base station, the second SRS symbol via the antenna port of the first radio chain with the offset applied to the first radio chain; and communicating with the base station based on channel state information determined using at least the first SRS symbol and the second SRS symbol. 2 . The method as recited by claim 1 , wherein the antenna port is a first antenna port to a first antenna of the UE and the method further comprises: transmitting, to the base station, an indication that the UE is capable of implementing a channel sounding procedure that includes: transmitting the first SRS symbol via the first antenna; and transmitting the second SRS symbol via a second antenna of the UE that is coupled to a second antenna port of the second radio chain. 3 . The method as recited by claim 2 , further comprising: receiving, from the base station, a request to implement the channel sounding procedure by: transmitting the first SRS symbol via the first antenna of the UE; and transmitting the second SRS symbol via the second antenna of the UE. 4 . The method as recited by claim 3 , wherein a hardware configuration of the UE is not capable of implementing a one transmit chain to four receive chain (1T4R) or a two transmit chain to four receive chain (2T4R) channel sounding procedure, and the request to implement the channel sounding procedure requests that the UE perform the channel sounding procedure by using one of: 1T4R antenna switching; or 2T4R antenna switching. 5 . The method as recited by claim 1 , wherein: the first radio chain is configured for transmitting uplink communications and receiving downlink communications; and the second radio chain is configured for receiving downlink communications. 6 . (canceled) 7 . The method as recited by claim 1 , wherein: the set of SRS symbols further comprises a third SRS symbol and a fourth SRS symbol, the offset is a first offset, the antenna port of the first radio chain is a first antenna port, and the method further comprises: determining, for the fourth SRS symbol, a second offset based on a difference between a third radio chain of the UE and a fourth radio chain of the UE; mapping the third SRS symbol to a second antenna port of the third radio chain of the UE; mapping the fourth SRS symbol to the second antenna port of the third radio chain; transmitting, to the base station, the third SRS symbol via the second antenna port of the third radio chain; applying the second offset for the fourth SRS symbol to the third radio chain; transmitting, to the base station, the fourth SRS symbol via the second antenna port of the third radio chain with the second offset applied; and communicating with the base station based on channel state information determined using at least the first SRS symbol, the second SRS symbol, the third SRS symbol, and the fourth SRS symbol. 8 . The method as recited by claim 1 , wherein the mapping of the second SRS symbol to the antenna port of the first radio chain comprises mapping the second SRS symbol to a physical antenna port associated with the first radio chain. 9 . The method as recited by claim 1 , wherein the mapping of the second SRS symbol to the antenna port of the first radio chain comprises: mapping the second SRS symbol to time resources or frequency resources of a resource grid for an air interface that are associated with an antenna or an antenna port of the second radio chain; or mapping the second SRS symbol from a first SRS port or a second SRS port to the antenna port of the first radio chain. 10 . The method as recited by claim 1 , wherein: the offset is determined based on a difference in receive performance between the first radio chain and the second radio chain of the UE; or the offset is determined as a transmitter gain adjustment for the first radio chain such that performance of the first radio chain approximates performance of the second radio chain. 11 . The method as recited by claim 1 , wherein determining the offset further comprises determining the offset by: measuring a first receive performance metric of the first radio chain of the UE; measuring a second receive performance metric of the second radio chain of the UE; and determining a difference between the first receive performance metric and the second receive performance metric. 12 - 18 . (canceled) 19 . An apparatus comprising: a first radio chain coupled to a first antenna port; a second radio chain coupled to a second antenna port; and a wireless transceiver coupled to the first radio chain and the second radio chain, the wireless transceiver configured to: generate a set of sounding reference signal (SRS) symbols that include at least a first SRS symbol and a second SRS symbol; determine, for the second SRS symbol, an offset based on a difference between the first radio chain and the second radio chain; map the first SRS symbol to the first antenna port of the first radio chain; map the second SRS symbol to the first antenna port of the first radio chain; transmit, to a base station, the first SRS symbol via the antenna port of the first radio chain; apply the offset for the second SRS symbol to the first radio chain; transmit, to the base station, the second SRS symbol via the antenna port of the first radio chain with the offset applied to the first radio chain; and communicate with the base station based on channel state information determined using at least the first SRS symbol and the second SRS symbol. 20 . The apparatus as recited by claim 19 , wherein: the first radio chain is configured for transmitting uplink communications and receiving downlink communications; and the second radio chain is configured for receiving downlink communications. 21 . The apparatus as recited by claim 19 , wherein the wireless transceiver is further configured to: receive, from the base station, a request to implement a channel sounding procedure by: transmitting the first SRS symbol via a first antenna of the apparatus; and transmitting the second SRS symbol via a second antenna of the apparatus. 22 . The apparatus as recited by claim 21 , wherein a hardware configuration of the apparatus is not capable of implementing a one transmit chain to four receive chain (1T4R) or a two transmit chain to four receive chain (2T4R) channel sounding procedure, and the request to implement the channel sounding procedure requests that the apparatus perform the channel sounding procedure by using one of: 1T4R antenna switching; or 2T4R antenna switching. 23 . The apparatus as recited by claim 19 , wherein the wireless transceiver is further configured to: determine the offset based on a difference in receive performance between the first radio chain and the second radio chain of the apparatus; or det

Assignees

Inventors

Classifications

  • using sounding signals · CPC title

  • of dedicated pilots, i.e. pilots destined for a single user or terminal · CPC title

  • H04L5/0048Primary

    Allocation of pilot signals, i.e. of signals known to the receiver (allocation of control signalling H04L5/0053; use of control signalling H04L5/0091) · CPC title

  • Time-frequency-space · CPC title

  • Signalling for the administration of the divided path, e.g. signalling of configuration information · CPC title

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What does patent US2023421414A1 cover?
The present disclosure describes various aspects of adaptive sounding reference signal mapping that a user equipment (UE) implements to improve channel estimation. In aspects, a set of sounding reference signal (SRS) symbols are generated that include at least first and second SRS symbols. An offset for the second SRS symbol is determined based on a difference between a first radio chain and a …
Who is the assignee on this patent?
Google Llc
What technology area does this patent fall under?
Primary CPC classification H04L25/0224. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Dec 28 2023 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).