IP Library Granted Patent US 10,390,183
Granted Patent B2
US 10,390,183 · App. 15/441,968 · Granted Aug 20, 2019

Light fixture positioning system that transmits beacon signals having different spatial resolutions

Inventor: Bobby Duane Taylor (Blue Ash, OH)
Assignee: LSI Industries, Inc.
H04W4/04G01S1/06G01S1/68G01S5/0205G01S5/02
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Quick Facts
Patent No.
US 10,390,183
App. No.
15/441,968
Granted
Aug 20, 2019
Kind
B2
Abstract

Systems, methods, and computer program products for determining the location of, and for communicating with a mobile device. An intelligent fixture transmits a first signal having a first spatial resolution and a second signal having a second spatial resolution. The spatial resolutions may be determined by a radiation pattern of the antenna broadcasting the signal. The mobile device receives at least one of the first and second signals, and determines an approximate location based thereon. An approximate location based on the first signal may be more accurate than an approximate location based on the second signal due to the different spatial resolutions of the signals. Location specific information may be transmitted to the mobile device based on the approximate location. The intelligent fixture may use an antenna having one spatial resolution for transmitting and receiving communication signals, and another antenna having a different spatial resolution for broadcasting beacon signals.

Claims (71)

1. A method of determining a location of a mobile device, the method comprising:

transmitting, from an intelligent fixture, a first radio frequency signal having a first spatial resolution that produces a first coverage area; and

transmitting, from the intelligent fixture, a second radio frequency signal having a second spatial resolution that is higher than the first spatial resolution and which produces a second coverage area within the first coverage area,

wherein the mobile device is configured to determine an approximate location based on at least one of the first radio frequency signal and the second radio frequency signal, and

the approximate location determined from the second radio frequency signal is more accurate than the approximate location determined from the first radio frequency signal.

2. The method of claim 1 further comprising:

receiving, at the intelligent fixture, at least one of a third signal transmitted by the mobile device in response to receiving the first radio frequency signal, or a fourth signal transmitted by the mobile device in response to receiving the second radio frequency signal, the at least one of the third signal or the fourth signal including data indicative of the approximate location of the mobile device.

3. The method of claim 2 , further comprising:

in response to receiving the third or the fourth signal, transmitting a fifth signal to the mobile device containing location specific information based on the approximate location of the mobile device.

4. The method of claim 1 , further comprising:

transmitting the first radio frequency signal using an omni-directional radiation pattern having a first spatial extent; and

transmitting the second radio frequency signal using a directional radiation pattern having a second spatial extent that is smaller than the first spatial extent.

5. The method of claim 4 wherein:

the directional radiation pattern is a downward directed beam that produces the second coverage area on a floor of an enclosed space, and

the omni-directional radiation pattern extends beyond the directional radiation pattern and produces the first coverage area on the floor of the enclosed space that is larger than the second coverage area.

6. The method of claim 5 , wherein the mobile device determines the approximate location based on at least one of the first radio frequency signal and the second radio frequency signal by:

determining the approximate location is within the second coverage area when the second radio frequency signal is received by the mobile device; and

determining the approximate location is not within the second coverage area when the second radio frequency signal is not received by the mobile device.

7. The method of claim 4 wherein the first radio frequency signal and the second radio frequency signal are transmitted using a reconfigurable antenna, or the first radio frequency signal is transmitted using an omni-directional antenna and the second radio frequency signal is transmitted using a directional antenna.

8. The method of claim 1 wherein the intelligent fixture is located in a ceiling of an enclosed space.

9. The method of claim 1 wherein the first radio frequency signal carries first data defining a first universally unique identifier, and the second radio frequency signal carries second data defining a second universally unique identifier.

10. The method of claim 1 wherein the intelligent fixture is a first intelligent fixture, and further comprising:

transmitting, from a second intelligent fixture, a third signal having a third spatial resolution;

wherein the mobile device is configured to determine the approximate location based on the at least one of the first radio frequency signal and the second radio frequency signal, the third signal, and a relative signal strength of each of the at least one of the first radio frequency signal and the second radio frequency signal, and the third signal.

11. An intelligent fixture comprising:

one or more transmitters that transmit a first radio frequency signal having a first spatial resolution that produces a first coverage area and a second radio frequency signal having a second spatial resolution that is higher than the first spatial resolution and which produces a second coverage area within the first coverage area;

wherein a mobile device determines an approximate location based on at least one of the first radio frequency signal and the second radio frequency signal, and

the approximate location determined from the second radio frequency signal is more accurate than the approximate location determined from the first radio frequency signal.

12. The intelligent fixture of claim 11 further comprising:

one or more receivers that receive one or more of a third signal transmitted by the mobile device in response to the mobile device receiving the first radio frequency signal, or a fourth signal transmitted by the mobile device in response to the mobile device receiving the second radio frequency signal, the at least one of the third signal or the fourth signal including data indicative of the approximate location of the mobile device.

13. The intelligent fixture of claim 11 further comprising:

a reconfigurable antenna configured to:

transmit the first radio frequency signal with an omni-directional radiation pattern having a first spatial extent; and

transmit the second radio frequency signal with a directional radiation pattern having a second spatial extent that is smaller than the first spatial extent.

14. The intelligent fixture of claim 11 further comprising:

an omni-directional antenna that transmits the first radio frequency signal with a first radiation pattern having a first spatial extent; and

a directional antenna that transmits the second radio frequency signal with a second radiation pattern having a second spatial extent that is smaller than the first spatial extent.

15. The intelligent fixture of claim 14 wherein:

the second radiation pattern is a downward directed beam that produces the second coverage area on a floor of an enclosed space, and

the first radiation pattern extends beyond the second radiation pattern and produces the first coverage area on the floor of the enclosed space that is smaller larger than the first second coverage area.

16. The intelligent fixture of claim 11 , wherein the intelligent fixture is further configured to:

transmit a third signal to the mobile device containing location specific information based on the approximate location of the mobile device.

17. A method of locating a mobile device, the method comprising:

receiving, at the mobile device from a single anchor node of a positioning system, one or more of a first radio frequency signal having a first spatial resolution that produces a first coverage area, and a second radio frequency signal having a second spatial resolution that is higher than the first spatial resolution and which produces a second coverage area within the first coverage area;

in response to receiving the first radio frequency signal, determining a first approximate location based on the first radio frequency signal, and

in response to receiving the second radio frequency signal, determining a second approximate location based on the second radio frequency signal.

18. The method of claim 17 , further comprising:

transmitting, by the mobile device, a third signal conveying first data indicative of one of the first approximate location or the second approximate location;

receiving, at the mobile device, a fourth signal conveying second data indicative of a destination location; and

displaying, by the mobile device, instructions for moving from the one of the first approximate location or the second approximate location to the destination location.

19. The method of claim 18 wherein the destination location is a location proximate to a product in a store.

20. The method of claim 17 , further comprising:

transmitting, by the mobile device, a third signal conveying first data indicative of one of the first approximate location or the second approximate location;

receiving, at the mobile device, a fourth signal conveying second data that defines a marketing promotion, a coupon, or user specific information; and

displaying, by the mobile device, the marketing promotion, the coupon, or the user specific information.

21. A mobile device comprising:

a receiver that receives, from a single anchor node of a positioning system, one or more of a first radio frequency signal having a first spatial resolution that produces a first coverage area, and a second radio frequency signal having a second spatial resolution that is higher than the first spatial resolution and which produces a second coverage area within the first coverage area;

a processor configured to, in response to receiving the first radio frequency signal, determine a first approximate location based on the first radio frequency signal, and in response to receiving the second radio frequency signal, determine a second approximate location based on the second radio frequency signal.

22. A computer program product for determining a location of a mobile device, the computer program product comprising:

a non-transitory computer-readable storage medium; and

program code stored on the non-transitory computer-readable storage medium that, when executed by one or more processors of an intelligent fixture, causes the intelligent fixture to:

transmit a first radio frequency signal having a first spatial resolution that produces a first coverage area; and

transmit a second radio frequency signal having a second spatial resolution that is higher than the first spatial resolution and which produces a second coverage area within the first coverage area,

wherein the mobile device is configured to determine an approximate location based on at least one of the first radio frequency signal and the second radio frequency signal, and

the approximate location determined from the second radio frequency signal is more accurate than the approximate location determined from the first radio frequency signal.

23. A computer program product for determining a location of a mobile device, the computer program product comprising:

a non-transitory computer-readable storage medium; and

program code stored on the non-transitory computer-readable storage medium that, when executed by one or more processors of the mobile device, causes the mobile device to:

receive, from a single anchor node of a positioning system, one or more of a first radio frequency signal having a first spatial resolution that produces a first coverage area, and a second radio frequency signal having a second spatial resolution that is higher than the first spatial resolution and which produces a second coverage area within the first coverage area;

in response to receiving the first radio frequency signal, determine a first approximate location based on the first radio frequency signal, and

in response to receiving the second radio frequency signal, determine a second approximate location based on the second radio frequency signal.

Assignments (2)
SECURITY INTEREST Recorded Apr 6, 2026
From: LSI INDUSTRIES INC.
To: PNC BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 075366/0338 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2017
From: TAYLOR, BOBBY DUANE
To: LSI INDUSTRIES, INC.
Reel/Frame 041379/0248 →
Continuity (1)
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