IP Library Granted Patent US 12,008,840
Granted Patent B2
US 12,008,840 · App. 16/917,568 · Granted Jun 11, 2024

Vehicle traffic and vehicle related transaction control system

Inventors: Brian Heath (Vancouver, CA); Tse Young Ko (Edmonton, CA); Brian Mofford (Edmonton, CA)
Assignee: Drivewyze Ltd.
G07B15/063G06Q10/0832G06Q20/3224G06Q50/40G08G1/096716G08G1/096741G08G1/096775G08G1/207G06Q2240/00G08G1/017G08G1/02G08G1/04G08G1/14
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Quick Facts
Patent No.
US 12,008,840
App. No.
16/917,568
Granted
Jun 11, 2024
Kind
B2
Abstract

A method of vehicle movement control includes setting up a weigh station geofence corresponding to a geographic location of a vehicle weigh station and setting up an additional geofence corresponding to the vehicle weigh station. At a central processing system, a first message is received from a mobile wireless device that is being carried in a vehicle. The first message indicates that the vehicle has entered the weigh station geofence, and includes vehicle related information, vehicle location information, and a bypass request. The method further includes determining by the central processing system whether the vehicle is permitted to bypass the vehicle weigh station, and sending to the mobile wireless device a bypass message from the central processing system indicating whether the vehicle is permitted to bypass the vehicle weigh station.

Claims (68)

1. A method of vehicle movement control, comprising:

sending, to a mobile wireless device being carried in a vehicle:

a weigh station geofence corresponding to a geographic location of a vehicle weigh station; and

a compliance geofence corresponding to the vehicle weigh station,

wherein the mobile wireless device is automatically monitoring a location of the vehicle with respect to the weigh station geofence and the compliance geofence;

receiving, at a central processing system a first message from the mobile wireless device in which the first message is automatically generated in response to the vehicle entering the weigh station geofence, the first message including vehicle related information, vehicle location information, and a bypass request;

in response to receiving the first message, automatically determining by the central processing system whether the vehicle is permitted to bypass the vehicle weigh station;

sending to the mobile wireless device, a bypass message from the central processing system indicating whether the vehicle is permitted to bypass the vehicle weigh station; and

automatically determining by the central processing system or the mobile wireless device whether the vehicle complied with the bypass message based on the presence of the vehicle at the compliance geofence.

2. The method of claim 1 further comprising

sending to the mobile wireless device a message from the central processing system comprising updated information corresponding to a change of jurisdiction.

3. The method of claim 2 in which the central processing system sends the updated information in response to the mobile wireless device sending a message indicating that the mobile wireless device has entered a geofence corresponding to a state boundary.

4. The method of claim 1 in which the compliance geofence is situated beyond the vehicle weigh station.

5. The method of claim 4 in which the determination of whether the bypass message has been complied with is also based on the vehicle transit time between the weigh station geofence and the compliance geofence.

6. The method of claim 1 in which the compliance geofence is situated on a ramp of the vehicle weigh station.

7. The method of claim 1 further comprising

sending to the mobile wireless device a wake up geofence located before the weigh station geofence.

8. A method of vehicle movement control, comprising:

receiving at a mobile wireless device:

a weigh station geofence corresponding to a geographic location of a vehicle weigh station; and

a compliance geofence corresponding to the vehicle weigh station;

while the mobile wireless device is being carried by a vehicle, automatically monitoring a location of the vehicle with respect to the weigh station geofence and the compliance geofence;

sending to a central processing system a first message from the mobile wireless device, in which the first message is automatically generated in response to the vehicle entering the weigh station geofence, the first message including vehicle related information, vehicle location information and a bypass request;

receiving, at the mobile wireless device a bypass message from the central processing system indicating whether the vehicle is permitted to bypass the vehicle weigh station, wherein whether to send the bypass message to the mobile wireless device is automatically determined by the central processing system in response to receiving the first message;

automatically determining a presence of the vehicle at the compliance geofence; and

automatically determining, by the central processing system or the mobile wireless device, whether the vehicle complied with the bypass message based on the presence of the vehicle at the compliance geofence.

9. The method of claim 8 further comprising sending to the mobile wireless device a message from the central processing system comprising updated information corresponding to a change of jurisdiction.

10. The method of claim 9 in which the central processing system sends the updated information in response to the mobile wireless device sending a message indicating that the mobile wireless device has entered a geofence corresponding to a state boundary.

11. The method of claim 8 in which the compliance geofence is situated beyond the vehicle weigh station.

12. The method of claim 11 in which the determination of whether the bypass message has been complied with is also based on the vehicle transit time between the weigh station geofence and the compliance geofence.

13. The method of claim 8 in which the compliance geofence is situated on a ramp of the vehicle weigh station.

14. The method of claim 8 further comprising a wake up geofence located before the weigh station geofence.

15. A method of vehicle traffic control using a central processing system connected to a telecommunications network, the method comprising

sending, through the telecommunications network to a mobile wireless device, a dataset defining geofences comprising at least two types of geofence including a weigh station geofence type and a compliance geofence type, wherein for each geofence of the weigh station geofence type there is a corresponding compliance geofence, the mobile wireless device being carried by a vehicle and automatically monitoring a location of the vehicle with respect to the at least two types of geofence; and

receiving, through the telecommunications network, a first message from the mobile wireless device, in which the first message is automatically generated in response to the vehicle entering the weigh station geofence, and the central processing system or the mobile wireless device automatically determining whether the first message has been complied with based on the presence of the vehicle at the compliance geofence.

16. The method of claim 15 in which the at least two types of geofence further comprise a toll station geofence type.

17. The method of claim 15 in which the at least two types of geofence further comprise a wake up geofence type.

18. The method of claim 15 in which the at least two types of geofence further comprise a wake up geofence type, wherein for each geofence of the weigh station geofence type there is a corresponding wake up geofence.

19. The method of claim 15 in which the at least two types of geofence further comprise a jurisdiction geofence type.

20. A central processing system connected to a telecommunications network, the telecommunications network also capable of being connected to at least a mobile wireless device being carried by a vehicle;

the central processing system comprising a server having a persistent memory,

wherein the persistent memory stores geofences comprising at least two types of geofence, and

wherein the central processing system is configured to send, through the telecommunications network to the mobile device, a dataset defining at least two geofences of the at least two types of geofence, the at least two types of geofence including a weigh station geofence type and a compliance geofence type, wherein for each geofence of the weigh station geofence type there is a corresponding compliance geofence, and

wherein the central processing system is configured to receive a first message from the mobile wireless device, the mobile wireless device automatically monitoring a location of the vehicle with respect to at least one geofence of the at least two types of geofence, wherein the first message is automatically generated in response to the vehicle entering a geofence of the weigh station geofence type, and the central processing system or the mobile wireless device automatically determines whether the first message has been combined with based on the presence of the vehicle at the corresponding compliance geofence.

21. The central processing system of claim 20 in which the at least two types of geofence further comprise a weigh station geofence type and a toll station geofence type.

22. The central processing system of claim 20 in which the at least two types of geofence further comprise a wake up geofence type.

23. The central processing system of claim 20 in which the at least two types of geofence further comprise a wake up geofence type, wherein for each geofence of the weigh station geofence type there is a corresponding wake up geofence.

24. The central processing system of claim 20 in which the at least two types of geofence further comprise a jurisdiction geofence type.

25. A method of vehicle movement control, comprising:

while a mobile wireless device is being carried in a moving vehicle, periodically obtaining a location of the mobile device by utilizing a GPS receiver on board the mobile wireless device;

comparing, by the mobile wireless device, the location of the mobile wireless device to a set of stored geographic areas corresponding to bypass geofences that are set up on the approach lanes to weigh stations;

when the location of the mobile wireless device is within a bypass geofence of the set of stored geographic areas, communicating vehicle information and vehicle location information from the mobile wireless device to a central processing system, in which the central processing system comprises a vehicle screening system for determining whether the vehicle should stop at the weigh station associated with the geographic area within which the mobile wireless device is located, and wherein communicating vehicle related information and vehicle location information to the central processing system comprises forwarding a bypass request;

receiving at the mobile wireless device a bypass message from the central processing system indicating whether the vehicle is permitted to bypass the weigh station;

monitoring, by the mobile wireless device, whether the mobile wireless device enters a geographic area corresponding to a compliance geofence associated with the weigh station;

when the mobile wireless device determines that it has entered the compliance geofence, communicating with vehicle related information and vehicle location information from the mobile wireless device to the central processing system; and

determining with the central processing system or the mobile wireless device whether the bypass message has been complied with;

wherein the compliance geofence is situated beyond the weigh station and the determination of whether the bypass message has been complied with is based on the vehicle transit time between the bypass geofence and the compliance geofence, or

wherein the compliance geofence is situated on a ramp of the weigh station and the determination of whether the bypass message has been complied with is based on whether or not the vehicle took the ramp of the weigh station.

26. The method of claim 25 in which the vehicle related information comprises one or more of a carrier identification number, a License Plate Number, a Vehicle Identification Number (VIN), a Commercial Driver's License Number, GPS data, or electronic logs, and in which the mobile wireless device comprises a computing system installed in the moving vehicle.

27. The method of claim 25 further comprising

sending a request to a third party provider.

28. The method of claim 27 in which the third party provider is a weigh station operator.

29. The method of claim 25 in which the determination of whether the bypass message has been complied with is carried out by the central processing system after receiving the vehicle related information and vehicle location information communicated by the mobile wireless device when the mobile wireless device had determined it had entered the compliance geofence.

30. A system comprising:

a mobile wireless device transportable in a moving vehicle, the mobile wireless device having a set of stored geographic areas corresponding to bypass geofences that are set up on approach lanes to weigh stations; and

a central processing system, wherein the central processing system comprises a vehicle screening system configured to determine whether the moving vehicle should stop at the weigh station associated with the geographic area within which the mobile wireless device is located,

wherein the mobile wireless device is configured to communicate with the central processing system, and

wherein the mobile wireless device and the central processing system are configured to carry out the method steps of claim 25 .

Assignments (3)
RELEASE OF SECURITY INTEREST IN INTELLECTUAL PROPERTY AT R/F 060211/0674 Recorded Aug 14, 2024
From: CANADIAN IMPERIAL BANK OF COMMERCE
To: DRIVEWYZE LTD. (F/K/A INTELLIGENT IMAGING SYSTEMS, INC.)
Reel/Frame 068602/0648 →
CHANGE OF NAME Recorded Apr 12, 2024
From: INTELLIGENT IMAGING SYSTEMS, INC.
To: DRIVEWYZE LTD.
Reel/Frame 067098/0227 →
SECURITY INTEREST Recorded Jun 15, 2022
From: INTELLIGENT IMAGING SYSTEMS, INC.
To: CANADIAN IMPERIAL BANK OF COMMERCE
Reel/Frame 060211/0674 →
Continuity (4)
Continuation 16856922 · Apr 23, 2020
Continuation 13414652 · Mar 7, 2012
Provisional Application 61450055 · Mar 7, 2011
Related Publication 20200334990A1 · Oct 22, 2020
Cited By (1)
US 12,323,878