IP Library › Granted Patent US 11,540,088
Granted Patent B2
US 11,540,088 · App. 17/142,465 · Granted Dec 27, 2022

System and method for locating a portable device in different zones relative to a vehicle and with device zone indicators

Inventors: Joseph A. Santavicca (Auburn Hills, MI); Robert Mahrle (Roseville, MI); Tristen Kyle Pierson (Rochester, MI)
Assignee: VOXX INTERNATIONAL CORPORATION
H04W4/029B60R25/245H04B17/27H04B17/318H04W4/023H04W4/40H04W4/80H04W8/005
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Quick Facts
Patent No.
US 11,540,088
App. No.
17/142,465
Granted
Dec 27, 2022
Kind
B2
Abstract

A vehicle system may include a plurality of wireless transmitters carried by a vehicle and configured to transmit wireless signals, at least one indicator carried by the vehicle, and a portable device moveable relative to the vehicle and configured to receive the wireless signals from the plurality of wireless transmitters. The system may further include a controller carried by the vehicle and configured to wirelessly communicate with the portable device, and determine a predicted zone the portable device is located in adjacent to the vehicle based upon the received wireless signals, with the predicted zone being one of a plurality of different zones adjacent the vehicle having respective vehicle functions associated therewith. The controller may be further configured to cause the at least one indicator to provide an indication that the portable device has entered the predicted zone, and enable the respective vehicle function associated with the predicted zone.

Claims (47)

1. A vehicle system comprising:

a plurality of wireless transmitters carried by a vehicle and configured to transmit wireless signals;

at least one indicator carried by the vehicle;

a portable device moveable relative to the vehicle and configured to receive the wireless signals from the plurality of wireless transmitters; and

a controller carried by the vehicle and configured to

wirelessly communicate with the portable device,

determine a predicted zone the portable device is located in adjacent to the vehicle based upon the received wireless signals and training data determined based upon a machine learning algorithm, the predicted zone being one of a plurality of different zones adjacent the vehicle having respective vehicle functions associated therewith,

cause the at least one indicator to provide an indication that the portable device has entered the predicted zone, and

enable the respective vehicle function associated with the predicted zone.

2. The vehicle system of claim 1 wherein one of the plurality of different zones corresponds to a driver side of the vehicle; and wherein the respective vehicle control function for the zone corresponding to the driver side of the vehicle comprises unlocking at least a driver's door.

3. The vehicle system of claim 1 wherein one of the plurality of different zones corresponds to a rear of the vehicle; and wherein the respective vehicle function for the zone corresponding to the rear of the vehicle comprises actuating at least one of a vehicle trunk and liftgate.

4. The vehicle system of claim 1 wherein the machine learning algorithm comprises at least one of a neural network, a gradient boosting tree, a naïve Bayes classification, a K-nearest neighbor classification, and a support vector machine.

5. The vehicle system of claim 1 wherein the machine learning comprises supervised machine learning.

6. The vehicle system of claim 1 wherein the controller comprises a memory storing a previously trained supervised machine learning model.

7. The vehicle system of claim 1 wherein the at least one indicator comprises at least one underbody light carried underneath the vehicle and directed at the ground.

8. The vehicle system of claim 1 wherein the at least one indicator comprises a respective light corresponding to each of the plurality of different zones.

9. The vehicle system of claim 1 wherein the plurality of zones comprises at least one exterior zone adjacent the vehicle and an interior zone within the vehicle; wherein the at least one indicator comprises at least one multi-color light; and wherein the controller is configured to cause the at least one multi-color light to provide different color indications with respect to the at least one exterior zone and the interior zone.

10. The vehicle system of claim 1 wherein the at least one indicator comprises at least one of tail lights, head lights, and turn signal lights.

11. The vehicle system of claim 1 wherein the at least one indicator comprises at least one light; and wherein the controller is configured to cause the at least one light to provide a visual indication having a blinking pattern.

12. The vehicle system of claim 1 wherein the at least one indicator comprises at least one multi-color light; and wherein the controller is configured to cause the at least one multi-color light to provide a visual indication that changes color based upon location changes of the portable device.

13. The vehicle system of claim 1 wherein the at least one indicator comprises at least one audible indicator; and wherein the controller is configured to cause the at least one audible indicator to provide an audible indication directed toward the predicted zone.

14. The vehicle system of claim 1 wherein the portable device comprises a smart phone; and wherein the controller is further configured to cause the at least one indicator to provide a failure indication responsive to a failure to register with the smart phone.

15. A vehicle system comprising:

a plurality of wireless transmitters carried by a vehicle and configured to transmit wireless signals;

at least one indicator carried by the vehicle; and

a controller carried by the vehicle and configured to

wirelessly communicate with a portable device moveable relative to the vehicle and configured to receive the wireless signals from the plurality of wireless transmitters,

determine a predicted zone the portable device is located in adjacent to the vehicle based upon the received wireless signals and training data determined based upon a machine learning algorithm, the predicted zone being one of a plurality of different zones adjacent the vehicle having respective vehicle functions associated therewith,

cause the at least one indicator to provide an indication that the portable device has entered the predicted zone, and

enable the respective vehicle function associated with the predicted zone.

16. The vehicle system of claim 15 wherein one of the plurality of different zones corresponds to a driver side of the vehicle; and wherein the respective vehicle control function for the zone corresponding to the driver side of the vehicle comprises unlocking at least a driver's door.

17. The vehicle system of claim 15 wherein one of the plurality of different zones corresponds to a rear of the vehicle; and wherein the respective vehicle function for the zone corresponding to the rear of the vehicle comprises actuating at least one of a vehicle trunk and liftgate.

18. The vehicle system of claim 15 wherein the at least one indicator comprises at least one underbody light carried underneath the vehicle and directed at the ground.

19. The vehicle system of claim 15 wherein the at least one indicator comprises a respective light corresponding to each of the plurality of different zones.

20. The vehicle system of claim 15 wherein the at least one indicator comprises at least one audible indicator; and wherein the controller is configured to cause the at least one audible indicator to provide an audible indication directed toward the predicted zone.

21. A method comprising:

transmitting wireless signals from a plurality of wireless transmitters carried by a vehicle; and

at a controller carried by the vehicle,

wirelessly communicating with a portable device moveable relative to the vehicle and configured to receive the wireless signals from the plurality of wireless transmitters,

determining a predicted zone the portable device is located in adjacent to the vehicle based upon the received wireless signals and training data determined based upon a machine learning algorithm, the predicted zone being one of a plurality of different zones adjacent the vehicle having respective vehicle functions associated therewith,

causing at least one indicator carried by the vehicle to provide an indication that the portable device has entered the predicted zone, and

enabling the respective vehicle function associated with the predicted zone.

22. The method of claim 21 wherein one of the plurality of different zones corresponds to a driver side of the vehicle; and wherein the respective vehicle control function for the zone corresponding to the driver side of the vehicle comprises unlocking at least a driver's door.

23. The method of claim 21 wherein one of the plurality of different zones corresponds to a rear of the vehicle; and wherein the respective vehicle function for the zone corresponding to the rear of the vehicle comprises actuating at least one of a vehicle trunk and liftgate.

24. The method of claim 21 wherein the at least one indicator comprises at least one underbody light carried underneath the vehicle and directed at the ground.

25. The method of claim 21 wherein the at least one indicator comprises a respective light corresponding to each of the plurality of different zones.

26. The method of claim 21 wherein the at least one indicator comprises at least one audible indicator; and wherein the controller is configured to cause the at least one audible indicator to provide an audible indication directed toward the predicted zone.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2021
From: SANTAVICCA, JOSEPH A.; MAHRLE, ROBERT; PIERSON, TRISTEN KYLE
To: VOXX INTERNATIONAL CORPORATION
Reel/Frame 054849/0278 →
Continuity (7)
Continuation In Part 16707049 · Dec 9, 2019
Continuation In Part 16661252 · Oct 23, 2019
Continuation 16125049 · Sep 7, 2018
Continuation 15290120 · Oct 11, 2016
Provisional Application 62957507 · Jan 6, 2020
Provisional Application 62239080 · Oct 8, 2015
Related Publication 20210127233A1 · Apr 29, 2021