IP Library Patent Application 18535426
Patent Application
App. No. 18/535,426

SOUNDING REFERENCE SIGNAL ANALYSIS BASED USER MOBILITY ESTIMATION

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Patent No.
US None
App. No.
18/535,426
Abstract

In general, the current subject matter relates to sounding reference signal analysis based user mobility estimation. In some implementations, sounding reference signal analysis based user mobility estimation includes receiving, via one or more antennas, using at least one processor, a plurality of sounding reference signals from a user equipment that is external to the at least one processor, analyzing, using the at least one processor, the plurality of sounding reference signals during a first time period and a second time period, determining, using the at least one processor, a target correlation value based on analyzing the plurality of sounding reference signals during the first time period and the second time period, and determining, using the at least one processor, based on the target correlation value, a mobility of the user equipment in a geographical area.

Claims (60)

1 . A method, comprising:

receiving, via one or more antennas, a plurality of sounding reference signals from a user equipment (UE);

analyzing, the plurality of sounding reference signals during a first time period and a second time period;

determining, a target correlation value based on analyzing the plurality of sounding reference signals during the first time period and the second time period; and

determining, based on the target correlation value, a mobility of the UE in a geographical area.

2 . The method according to claim 1 , wherein the mobility of the UE in the geographical area corresponds to one of the UE being mobile or the UE being stationary

3 . The method according to claim 1 , wherein the analyzing of the plurality of sounding reference signals comprises:

determining a first candidate correlation values associated with a first set of the plurality of sounding reference signals received by the one or more antennas during the first time period; and

determining a second candidate correlation values associated with a second set of the plurality of sounding reference signals received by the one or more antennas during the second time period.

4 . The method according to claim 1 , wherein the determining of the target correlation value comprises correcting for one or more timing errors associated with the UE.

5 . The method according to claim 4 , wherein the correcting for the one or more timing errors comprises:

comparing the first candidate correlation values with a correlation threshold value;

selecting a first subset of the first candidate correlation values, the first subset including candidate correlation values that satisfy the correlation threshold value; and

determining a first subset average value using the candidate correlation values included in the first subset that satisfy the correlation value threshold.

6 . The method according to claim 4 , wherein the determining of the target correlation value comprising:

comparing the second candidate correlation values with the correlation threshold value;

selecting a second subset of the second candidate correlation values, the second subset including candidate correlation values that satisfy the correlation threshold value; and

determining a second subset average value using the candidate correlation values included in the second subset that satisfy the correlation value threshold.

7 . The method according to claim 4 , further comprising:

comparing the first subset average value and the second subset average value; and

selecting a higher of the first subset average value and the second subset average value, the higher of the first subset average value and the second subset average value is the target correlation value.

8 . An apparatus, configured to:

receiving, via one or more antennas, using the at least one processor, a plurality of sounding reference signals from a user equipment (UE);

analyzing the plurality sounding reference signals during a first time period and a second time period;

determining a target correlation value based on analyzing the plurality of sounding reference signals during the first time period and the second time period; and

determining based on the target correlation value, a mobility of the UE in a geographical area.

9 . The apparatus of claim 8 , wherein the mobility of the UE in the geographical area corresponds to one of the user being mobile or the user being stationary.

10 . The apparatus according to claim 8 , wherein one of the operations of the analyzing of the plurality of sounding reference signals comprises:

determining a first candidate correlation values associated with a first set of the plurality of sounding reference signals received by the one or more antennas during the first time period; and

determining a second candidate correlation values associated with a second set of the plurality of sounding reference signals received by the one or more antennas during the second time period.

11 . The apparatus according to claim 8 , wherein one of the operations of the determining of the target correlation value comprises correcting for one or more timing errors associated with the user equipment.

12 . The apparatus according to claim 11 , wherein one of the operations of the correcting for the one or more timing errors comprising:

comparing the first candidate correlation values with a correlation threshold value;

selecting a first subset of the first candidate correlation values, the first subset including candidate correlation values that satisfy the correlation threshold value; and

determining a first subset average value using the candidate correlation values included in the first subset that satisfy the correlation value threshold.

13 . The apparatus according to claim 11 , wherein the operations further comprising:

comparing the second candidate correlation values with the correlation threshold value;

selecting a second subset of the second candidate correlation values, the second subset including candidate correlation values that satisfy the correlation threshold value; and

determining a second subset average value using the candidate correlation values included in the second subset that satisfy the correlation value threshold.

14 . The apparatus according to claim 11 , wherein the operations further comprising:

comparing the first subset average value and the second subset average value; and

selecting a higher of the first subset average value and the second subset average value, the higher of the first subset average value and the second subset average value is the target correlation value.

15 . At least one non-transitory storage media storing instructions that, when executed by at least one processor, cause the at least one processor to perform operations comprising:

receiving via one or more antennas, using the at least one processor, a plurality of sounding reference signals from a user equipment (UE) that is external to the at least one processor;

analyzing the plurality sounding reference signals during a first time period and a second time period;

determining a target correlation value based on analyzing the plurality of sounding reference signals during the first time period and the second time period; and

determining, based on the target correlation value, a mobility of the UE in a geographical area.

16 . The at least one non-transitory storage media of claim 15 , wherein the mobility of the UE in the geographical area corresponds to one of the UE being mobile or the user being stationary.

17 . The at least one non-transitory storage media of claim 15 , wherein one of the operations of the analyzing of the plurality of sounding reference signals comprises:

determining a first candidate correlation values associated with a first set of the plurality of sounding reference signals received by the one or more antennas during the first time period; and

determining a second candidate correlation values associated with a second set of the plurality of sounding reference signals received by the one or more antennas during the second time period.

18 . The at least one non-transitory storage media of claim 15 , wherein one of the operations of the determining of the target correlation value comprises correcting for one or more timing errors associated with the user equipment.

19 . The at least one non-transitory storage media of claim 18 , wherein one of the operations of the correcting for the one or more timing errors comprising:

comparing the first candidate correlation values with a correlation threshold value;

selecting a first subset of the first candidate correlation values, the first subset including candidate correlation values that satisfy the correlation threshold value; and

determining a first subset average value using the candidate correlation values included in the first subset that satisfy the correlation value threshold.

20 . The at least one non-transitory storage media of claim 18 , wherein the operations further comprising:

comparing the second candidate correlation values with the correlation threshold value;

selecting a second subset of the second candidate correlation values, the second subset including candidate correlation values that satisfy the correlation threshold value; and

determining a second subset average value using the candidate correlation values included in the second subset that satisfy the correlation value threshold.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2024
From: ALTIOSTAR NETWORKS INDIA PRIVATE LIMITED
To: RAKUTEN SYMPHONY, INC.
Reel/Frame 068023/0473 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2024
From: RAMAKRISHNA, RAGHAVENDRA MADANAHALLY; LALWALA, RONAK BHARATKUMAR
To: ALTIOSTAR NETWORKS INDIA PRIVATE LIMITED
Reel/Frame 067068/0688 →