IP Library › Granted Patent US 12,485,915
Granted Patent B2
US 12,485,915 · App. 18/242,821 · Granted Dec 2, 2025

Vehicle monitoring apparatus and method

Inventors: Eric Michael Dluzen (Aurora, IL); Michael Turner (Washington Township, MI); Joshua Dean Lebar (Oak Park, IL)
Assignee: International Truck Intellectual Property Company, LLC
B60W50/14B60W10/20B60W30/09B64U80/86B60W2050/146B60W2300/145B60W2554/80B60W2556/65B64U2101/30B64U2201/10
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Quick Facts
Patent No.
US 12,485,915
App. No.
18/242,821
Granted
Dec 2, 2025
Kind
B2
Abstract

A vehicle including a monitoring apparatus comprising a drone housing and a drone configured to be stowable in the drone housing and deployable for flying adjacent to the vehicle. The drone comprising a frame, at least one rotor connected to the frame, and at least one sensor connected to the frame. The at least one sensor is configured to monitor an area adjacent to the vehicle when the drone is deployed and provide a feedback signal. The vehicle further comprises a control module operably connected to the drone. The control module is configured to output a warning signal to a driver of the vehicle which is indicative of a potential hazard. The warning signal is responsive to the feedback signal of the at least one sensor of the drone.

Claims (67)

1 . A vehicle having a monitoring apparatus, comprising:

a drone housing;

a drone configured to be stowable in the drone housing and deployable for flying adjacent to the vehicle, the drone comprising:

a frame;

at least one rotor connected to the frame; and

at least one sensor connected to the frame, the at least one sensor configured to monitor an area adjacent to the vehicle when the drone is deployed and provide a feedback signal; and

a control module operably connected to the drone, the control module configured to output a warning signal to a driver of the vehicle which is indicative of a potential hazard, and the warning signal is responsive to the feedback signal of the at least one sensor of the drone;

the control module further configured to output a steering signal indicative of a steering adjustment to avoid the potential hazard.

2 . The vehicle of claim 1 , further comprising:

a display screen operably connected to the control module, the display screen configured to display the feedback signal of the at least one sensor of the drone in real time.

3 . The vehicle of claim 1 , wherein:

the control module is configured to calculate a distance between the vehicle and the potential hazard based at least in part upon the feedback signal of the at least one sensor of the drone.

4 . The vehicle of claim 3 , wherein:

the control module is configured to generate a live display of the vehicle and the area adjacent to the vehicle based at least in part upon the feedback signal of the at least one sensor of the drone and the calculated distance between the vehicle and the potential hazard.

5 . The vehicle of claim 1 , wherein:

the control module is further configured to:

dynamically track the location of the drone;

generate dedicated monitoring zones adjacent to the vehicle; and

send at least one command signal to the drone so that the drone flies to and monitors the dedicated monitoring zones to identify potential hazards around the vehicle.

6 . The vehicle of claim 1 , further comprising:

a cab configured to house the driver; and

the drone housing is connected to the cab.

7 . The vehicle of claim 1 , wherein:

the drone housing comprises:

a frame with an internal compartment configured to receive the drone;

a selectively closable door connected to the frame;

a charging station configured to charge a battery of the drone; and

a locking mechanism configured to selectively lock the drone within the internal compartment.

8 . The vehicle of claim 1 , wherein:

the vehicle is in the form of a truck which tows a payload; and

the drone is configured to monitor the truck, the payload attached to the truck, and an area adjacent to the truck and the payload.

9 . A monitoring apparatus for a vehicle, comprising:

a drone configured to be stowable on the vehicle and deployable for flying adjacent to the vehicle, the drone comprising:

a frame;

at least one rotor connected to the frame; and

at least one sensor connected to the frame, the at least one sensor configured to monitor an area adjacent to the vehicle when the drone is deployed and provide a feedback signal; and

a control module operably connected to the drone, the control module configured to output a warning signal to a driver of the vehicle which is indicative of a potential hazard, and the warning signal is responsive to the feedback signal of the at least one sensor of the drone;

the control module further configured to output a steering signal indicative of a steering adjustment to avoid the potential hazard.

10 . The monitoring apparatus of claim 9 , further comprising:

a display screen operably connected to the control module, the display screen configured to display the feedback signal of the at least one sensor of the drone in real time.

11 . The monitoring apparatus of claim 9 , wherein:

the control module is configured to calculate a distance between the vehicle and the potential hazard based at least in part upon the feedback signal of the at least one sensor of the drone.

12 . The monitoring apparatus of claim 11 , wherein:

the control module is configured to generate a live display of the vehicle and the area adjacent to the vehicle based at least in part upon the feedback signal of the at least one sensor of the drone and the calculated distance between the vehicle and the potential hazard.

13 . The monitoring apparatus of claim 9 , wherein:

the control module is further configured to:

dynamically track the location of the drone;

generate dedicated monitoring zones adjacent to the vehicle; and

send at least one command signal to the drone so that the drone flies to and monitors the dedicated monitoring zones to identify potential hazards around the vehicle.

14 . The monitoring apparatus of claim 9 , further comprising:

a drone housing configured to connect to a cab of the vehicle and to house the drone therein.

15 . The monitoring apparatus of claim 14 , wherein:

the drone housing comprises:

a frame with an internal compartment configured to receive the drone;

a selectively closable door connected to the frame;

a charging station configured to charge a battery of the drone; and

a locking mechanism configured to selectively lock the drone within the internal compartment.

16 . The monitoring apparatus of claim 9 , wherein:

the vehicle is in the form of a truck which tows a payload; and

the drone is configured to monitor the truck, the payload attached to the truck, and an area adjacent to the truck and the payload.

17 . A method for monitoring a vehicle, comprising the steps of:

providing a drone comprising a frame, at least one rotor connected to the frame, and at least one sensor connected to the frame, and a control module operably connected to the drone;

stowing the drone on the vehicle;

deploying the drone so that the drone flies adjacent to the vehicle;

monitoring, by the at least one sensor of the drone, an area adjacent to the vehicle; and

outputting a warning signal, by the control module, to a driver of the vehicle responsive to the feedback signal of the at least one sensor of the drone, the warning signal is indicative of a potential hazard; and

outputting a steering signal, by the control module, indicative of a steering adjustment to avoid the potential hazard.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2023
From: DLUZEN, ERIC MICHAEL; TURNER, MICHAEL; LEBAR, JOSHUA DEAN
To: INTERNATIONAL TRUCK INTELLECTUAL PROPERTY COMPANY, LLC
Reel/Frame 064848/0909 →
Continuity (1)
Related Publication 20250074441A1 · Mar 6, 2025
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