IP Library › Granted Patent US 12,200,573
Granted Patent B2
US 12,200,573 · App. 17/727,544 · Granted Jan 14, 2025

Location estimation apparatus, location estimation method, and non-transitory computer readable medium storing program for location estimation

Inventor: Fumiaki Miyake (Yokohama, JP)
Assignee: JVCKENWOOD Corporation
H04W4/029G01S5/06
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Quick Facts
Patent No.
US 12,200,573
App. No.
17/727,544
Granted
Jan 14, 2025
Kind
B2
Abstract

A location information server including: an acquisition unit configured to acquire, from each of a plurality of receivers, a received signal strength of a radio signal transmitted from a transmitter; an estimation unit configured to estimate a location of the transmitter based on the received signal strengths of the first to the third highest among the acquired received signal strengths; and a correction unit configured to correct, when the difference between a received signal strength based on at least one of the received signal strengths of the first to the third highest and a received signal strength of the fourth highest is smaller than a predetermined value, the estimated location of the transmitter based on the received signal strength of the fourth highest.

Claims (23)

1. A location estimation apparatus comprising:

an acquisition unit configured to acquire, from each of a plurality of receivers, a received signal strength of a radio signal sent out from a transmitter;

an estimation unit configured to estimate a location of the transmitter based on the received signal strengths of first to third highest among the acquired received signal strengths; and

a correction unit configured to correct, when a difference between a received signal strength based on the received signal strength of at least one of the first to the third highest and a received signal strength of fourth highest is smaller than a predetermined value, the estimated location of the transmitter based on the received signal strength of the fourth highest.

2. The location estimation apparatus according to claim 1 , wherein the correction unit is configured to correct the estimated location of the transmitter in a direction along a correction line connecting the estimated location of the transmitter and a location of the receiver that has acquired the received signal strength of the fourth highest.

3. The location estimation apparatus according to claim 2 , wherein the correction unit is configured to correct the estimated location of the transmitter with an intersection of a connection line and the correction line being set as an upper limit for the correction, the connection line being a line that connects two receivers that are disposed at opposite positions across the correction line among the receivers which have acquired the received signal strengths of the first to the third highest.

4. The location estimation apparatus according to claim 1 , wherein the correction unit is configured to correct the estimated location of the transmitter based on the difference between the received signal strength at the receiver disposed at a position opposing the receiver which has acquired the received signal strength of the fourth highest via the estimated location of the transmitter among the receivers that have acquired the received signal strengths of the first to the third highest and the received signal strength of the fourth highest.

5. The location estimation apparatus according to claim 1 ,

wherein regarding each of the received signal strengths of the first to the third highest, the estimation unit is configured to estimate, when first to third estimated circles each centered at the location of the receiver that has acquired the respective received signal strengths and having a radius that is a distance estimated based on the respective received signal strengths overlap with one another, a three-dimensional location of the transmitter within an overlapping region of the first to the third estimated circles, and

the correction unit is configured to correct the estimated location of the transmitter within the overlapping region based on the received signal strength of the fourth highest.

6. The location estimation apparatus according to claim 5 , wherein the correction unit is configured to correct, when a circumference of a fourth estimated circle centered at the location of the receiver that has acquired the received signal strength of the fourth highest and having a radius that is a distance estimated based on the received signal strength of the fourth highest overlap the overlapping region, the estimated location of the transmitter within the fourth estimated circle in the overlapping region.

7. The location estimation apparatus according to claim 5 , wherein the correction unit is configured to correct, when a circumference of the fourth estimated circle centered at the location of the receiver that has acquired the received signal strength of the fourth highest and having a radius that is a distance estimated based on the received signal strength of the fourth highest and the overlapping region do not overlap with one another, the estimated location of the transmitter so that the estimated location of the transmitter is brought closer to the circumference of the fourth estimated circle within the overlapping region.

8. The location estimation apparatus according to claim 1 , wherein

regarding each of the received signal strengths of the first to the third highest, the estimation unit is configured to estimate, when first to third estimated circles each centered at the location of the receiver that has acquired the respective received signal strengths and having a radius that is a distance estimated based on the respective received signal strengths do not overlap with one another, the location of the transmitter based on the received signal strengths of the first to the third highest, and

the correction unit is configured to correct, when a circumference of a fourth estimated circle centered at the location of the receiver that has acquired the received signal strength of the fourth highest and having a radius that is a distance estimated based on the received signal strength of the fourth highest and the estimated location of transmitter do not overlap with one another, the estimated location of the transmitter so that the estimated location of the transmitter is brought closer to the fourth estimated circle.

9. A location estimation method comprising:

acquiring, from each of a plurality of receivers, a received signal strength of a radio signal sent out from a transmitter;

estimating a location of the transmitter based on the received signal strengths of first to third highest among the acquired received signal strengths; and

correcting, when a difference between a received signal strength based on at least one of the received signal strengths of the first to the third highest and a received signal strength of fourth highest is smaller than a predetermined value, the estimated location of the transmitter based on the received signal strength of the fourth highest.

10. A non-transitory computer readable medium storing a program for location estimation for causing a computer to execute processing of:

acquiring, from each of a plurality of receivers, a received signal strength of a radio signal sent out from a transmitter;

estimating a location of the transmitter based on the received signal strengths of first to third highest among the acquired received signal strengths; and

correcting, when a difference between a received signal strength of at least one of the first to the third highest and a received signal strength of fourth highest is smaller than a predetermined value, the estimated location of the transmitter based on the received signal strength of the fourth highest.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2022
From: MIYAKE, FUMIAKI
To: JVCKENWOOD CORPORATION
Reel/Frame 059686/0288 →
Priority Claims (1)
JP 2019-212123 · Nov 25, 2019 · national
Continuity (2)
Continuation PCTJP2020042757 · Nov 17, 2020
Related Publication 20220248183A1 · Aug 4, 2022
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US 20160267779A1 · Kuang · 2016 [cited by examiner]
US 20210337454A1 · Zhao · 2021 [cited by examiner]
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Cited By (1)
US 12,687,644