IP Library Granted Patent US 11,902,620
Granted Patent B2
US 11,902,620 · App. 17/522,519 · Granted Feb 13, 2024

Geolocationing system and method for use of same

Inventors: Thomas R. Miller (Plano, TX); William C. Fang (Plano, TX); Vanessa Ogle (Fairview, TX)
Assignee: Enseo
H04N21/4516G01S5/0231G06Q50/12G08B25/016H04B17/318H04L65/1036H04N21/2143H04N21/25841H04N21/4524H04W4/023H04W4/33H04W4/80
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,902,620
App. No.
17/522,519
Granted
Feb 13, 2024
Kind
B2
Abstract

A geolocationing system and method for providing awareness in a multi-space environment, such as a hospitality environment or educational environment, are presented. In one embodiment of the geolocationing system, an array of gateway devices is provided. Each gateway device includes a gateway device identification providing an accurately-known fixed location within the multi-space environment. Each gateway device includes a wireless transceiver that receives a beacon signal from a proximate wireless-enabled personal locator device. The gateway devices, in turn, send gateway signals to a server, which determines estimated location of the wireless-enabled personal locator device with transmitted signal strength modeling.

Claims (45)

1. A gateway device positioned within a space in a multi-space environment for providing awareness in the multi-space environment, the gateway device comprising:

a housing,

a wireless transceiver associated with the housing,

a processor located within the housing and coupled to the wireless transceiver,

a memory accessible to the processor, the memory including a gateway device identification providing an accurately-known fixed location, the memory including processor-executable instructions that, when executed, cause the processor to:

receive a beacon signal via the wireless transceiver from a proximate wireless-enabled personal locator device, the beacon signal including a personal locator device identification and transmitted signal strength identification,

measure received signal strength of the beacon signal,

transmit a gateway signal to a server, the gateway signal including the personal locator device identification, the gateway device identification, the transmitted signal strength identification, and the received signal strength measurement; and

an estimated location of the proximate wireless-enabled personal locator device determined by the gateway signal utilizing trilateration, received signal strength modeling, and transmitted signal strength modeling.

2. The gateway device as recited in claim 1 , wherein the wireless transceiver is configured to communicate with a standard selected from the group consisting of infrared (IR), 802.11, 3G, 4G, Edge, Wi-Fi, ZigBee, near field communications (NFC), Bluetooth and Bluetooth low energy.

3. The gateway device as recited in claim 1 , further comprises a plurality of wireless transceivers.

4. The gateway device as recited in claim 1 , wherein the trilateration and the received signal strength modeling are at least partially integrated.

5. The gateway device as recited in claim 1 , wherein the trilateration and the transmitted signal strength modeling are at least partially integrated.

6. The gateway device as recited in claim 1 , wherein the received signal strength modeling and the transmitted signal strength modeling are at least partially integrated.

7. The gateway device as recited in claim 1 , wherein the housing further comprises a device selected from the group consisting of set-top boxes, common space gateway devices, and gateway service devices.

8. The gateway device as recited in claim 1 , wherein the proximate wireless-enabled personal locator device further comprises a device selected from the group consisting of single button personal locator devices and proximate wireless-enabled interactive programmable devices.

9. The gateway device as recited in claim 8 , wherein the proximate wireless-enabled interactive programmable device further comprises a device selected from the group consisting of smart watches, smart phones, and tablet computers.

10. The gateway device as recited in claim 1 , wherein the server further comprises a back-office hotel server.

11. The gateway device as recited in claim 1 , wherein the processor-executable instructions that, when executed, cause the processor to receive a plurality of gateway signals from a plurality of gateway devices of the array further comprise processor-executable instructions that, when executed cause the processor to:

receive a plurality of beacon signals via the wireless transceiver from the proximate wireless-enabled personal locator device, each of the plurality of beacon signals including a personal locator device identification and transmitted signal strength identification.

12. The gateway device as recited claim 1 , further comprising an operational mode selected from the group consisting of alerts-enabled, service request-enabled, tracking-enabled, and non-tracking-enabled.

13. The gateway device as recited in claim 12 , wherein in the alerts-enabled mode, the server receives a distress signal from the proximate wireless-enabled personal locator device.

14. The gateway device as recited in claim 12 , wherein in the service-request-enabled mode, the server receives a service request from the proximate wireless-enabled personal locator device.

15. The gateway device as recited in claim 12 , wherein in the tracking-enabled mode, the server maintains in memory one of a plurality of estimated locations with timestamps associated with the proximate wireless-enabled personal locator device and only last known locations with timestamps associated with the proximate wireless-enabled personal locator device.

16. A gateway device positioned within a space in a multi-space environment for providing awareness in the multi-space environment, the gateway device comprising:

a housing,

a wireless transceiver associated with the housing,

a processor located within the housing and coupled to the wireless transceiver,

a memory accessible to the processor, the memory including a gateway device identification providing an accurately-known fixed location, the memory including processor-executable instructions that, when executed, cause the processor to:

receive a beacon signal via the wireless transceiver from a proximate wireless-enabled personal locator device, the beacon signal including a personal locator device identification and transmitted signal strength identification,

measure received signal strength of the beacon signal,

transmit a gateway signal to a server, the gateway signal including the personal locator device identification, the gateway device identification, the transmitted signal strength identification, and received signal strength measurement; and

an estimated location of the proximate wireless-enabled personal locator device determined by a plurality of gateway signals, including the gateway signal, utilizing trilateration, received signal strength modeling, and transmitted signal strength modeling.

17. The gateway device as recited in claim 16 , wherein the wireless transceiver is configured to communicate with a standard selected from the group consisting of infrared (IR), 802.11, 3G, 4G, Edge, Wi-Fi, ZigBee, near field communications (NFC), Bluetooth and Bluetooth low energy.

18. The gateway device as recited in claim 16 , wherein the proximate wireless-enabled personal locator device further comprises a device selected from the group consisting of single button personal locator devices and proximate wireless-enabled interactive programmable devices.

19. The gateway device as recited in claim 18 , wherein the proximate wireless-enabled interactive programmable device further comprises a device selected from the group consisting of smart watches, smart phones, and tablet computers.

20. A gateway device positioned within a space in a multi-space environment for providing awareness in the multi-space environment, the gateway device comprising:

a housing,

a wireless transceiver associated with the housing,

a processor located within the housing and coupled to the wireless transceiver,

a memory accessible to the processor, the memory including a gateway device identification providing an accurately-known fixed location, the memory including processor-executable instructions that, when executed, cause the processor to:

receive a plurality of beacon signals via the wireless transceiver from a proximate wireless-enabled personal locator device, each of the plurality of beacon signals including a personal locator device identification and transmitted signal strength identification,

measure received signal strength of each of the plurality of beacon signals,

transmit a gateway signal to a server, the gateway signal including the personal locator device identification, the gateway device identification, the transmitted signal strength identification, and received signal strength measurement; and

an estimated location of the proximate wireless-enabled personal locator device determined by a plurality of gateway signals, including the gateway signal, utilizing trilateration, received signal strength modeling, and transmitted signal strength modeling.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2021
From: MILLER, THOMAS R.; FANG, WILLIAM C.; OGLE, VANESSA
To: ENSEO, LLC
Reel/Frame 058063/0947 →
Continuity (4)
Continuation 17085659 · Oct 30, 2020
Continuation 16661745 · Oct 23, 2019
Provisional Application 62751017 · Oct 26, 2018
Related Publication 20220070533A1 · Mar 3, 2022