IP Library › Granted Patent US 12,485,861
Granted Patent B2
US 12,485,861 · App. 18/232,925 · Granted Dec 2, 2025

Trailer sway detection and mitigation using a camera mirror system

Inventors: Thomas J. Hayes (Lakewood, OH); William R. Plow (Avon, OH)
Assignee: Bendix Commercial Vehicle Systems LLC
B60T8/17551B60T8/1708B60T8/171G06T7/73H04N23/695B60T2230/06G06T2207/30252
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Quick Facts
Patent No.
US 12,485,861
App. No.
18/232,925
Granted
Dec 2, 2025
Kind
B2
Abstract

Embodiments are presented herein for trailer sway detection and mitigation using a camera mirror system. In one embodiment, a vehicle controller is provided comprising: one or more processors; a non-transitory computer-readable medium; and program instructions stored on the non-transitory computer-readable medium. When executed by the one or more processors, the program instructions cause the one or more processors to: monitor images captured by at least one image capture device to detect sway of a trailer being towed by a tractor; and in response to detecting sway of the trailer, cause a braking system to apply a brake to attempt to reduce to the sway of the trailer.

Claims (62)

1 . A vehicle controller comprising:

one or more processors;

a non-transitory computer-readable medium; and

program instructions stored on the non-transitory computer-readable medium that, when executed by the one or more processors, cause the one or more processors to:

monitor images captured by at least one image capture device to detect sway of a trailer being towed by a tractor; and

in response to detecting sway of the trailer, cause a braking system to apply a brake to attempt to reduce the sway of the trailer;

wherein the program instructions further cause the one or more processors to:

determine a position of a trailing edge of the trailer over a period of time; and

determine an angle between the tractor and the position of the trailing edge of the trailer over the period of time;

wherein the sway of the trailer is detected in response to the angle changing without a corresponding change in a steering angle measurement.

2 . The vehicle controller of claim 1 , wherein the program instructions further cause the one or more processors to:

determine whether applying the brake reduced the sway of the trailer below a threshold; and

in response to determining that applying the brake did not reduce the sway of the trailer below the threshold, alert a driver.

3 . The vehicle controller of claim 1 , wherein the program instructions further cause the one or more processors to:

calculate a distance of the sway of the trailer;

wherein the braking system is caused to apply the brake to attempt to reduce to the sway of the trailer in response to the distance of the sway of the trailer exceeding a threshold.

4 . The vehicle controller of claim 1 , wherein the brake comprises a dolly brake.

5 . The vehicle controller of claim 1 , wherein the at least one image capture device augments a side mirror.

6 . A vehicle controller comprising:

one or more processors;

a non-transitory computer-readable medium; and

program instructions stored on the non-transitory computer-readable medium that, when executed by the one or more processors, cause the one or more processors to:

monitor images captured by at least one image capture device to detect sway of a trailer being towed by a tractor; and

in response to detecting sway of the trailer, cause a braking system to apply a brake to attempt to reduce the sway of the trailer;

wherein the program instructions further cause the one or more processors to:

determine a position of a trailing edge of the trailer over a period of time; and

determine an angle between the tractor and the position of the trailing edge of the trailer over the period of time;

wherein the sway of the trailer is detected in response to a frequency of changing of the angle exceeding a threshold.

7 . The vehicle controller of claim 6 , wherein the program instructions further cause the one or more processors to:

determine if a steering angle is near-center or steady; and

in response to determining that the steering angle is not near-center or steady, set a flag to recheck for the sway of the trailer once the steering angle is near-center or steady.

8 . The vehicle controller of claim 6 , wherein the program instructions further cause the one or more processors to:

cause panning of the at least one image capture device to place an image of the trailing edge of the trailer in a field of view of the at least one image capture device.

9 . The vehicle controller of claim 6 , wherein the brake comprises a trailer brake.

10 . The vehicle controller of claim 6 , wherein the at least one image capture device comprises a replacement for a side mirror.

11 . A method comprising:

performing in a vehicle comprising a tractor, a trailer towed by the tractor, and at least one image capture device:

analyzing images captured by the at least one capture device to determine a position of a trailing edge of the trailer over a period of time;

detecting a sway of the trailer based on the position of the trailing edge of the trailer over the period of time; and

in response to detecting the sway of the trailer, attempting to reduce the sway of the trailer;

wherein the method further comprises determining an angle between the tractor and the position of the trailing edge of the trailer over the period of time;

wherein the sway of the trailer is detected based on the angle changing without a corresponding change in a steering angle measurement.

12 . The method of claim 11 , further comprising:

determining whether the sway of the trailer was reduced below a threshold; and

in response to determining that the sway of the trailer was not reduced below the threshold, alerting a driver.

13 . The method of claim 11 , further comprising:

calculating a distance of the sway of the trailer;

wherein attempting to reduce the sway of the trailer is performed in response to the distance of the sway of the trailer exceeding a threshold.

14 . The method of claim 11 , further comprising:

determining if a steering angle is near-center or steady; and

in response to determining that the steering angle is not near-center or steady, setting a flag to recheck for the sway of the trailer once the steering angle is near-center or steady.

15 . The method of claim 11 , wherein attempting to reduce the sway of the trailer comprises applying a trailer brake or a dolly brake.

16 . A method comprising:

performing in a vehicle comprising a tractor, a trailer towed by the tractor, and at least one image capture device:

analyzing images captured by the at least one capture device to determine a position of a trailing edge of the trailer over a period of time;

detecting a sway of the trailer based on the position of the trailing edge of the trailer over the period of time; and

in response to detecting the sway of the trailer, attempting to reduce the sway of the trailer;

wherein the method further comprises determining an angle between the tractor and the position of the trailing edge of the trailer over the period of time;

wherein the sway of the trailer is detected in response to a frequency of a change in the angle exceeding a threshold.

17 . The method of claim 16 , further comprising:

panning the at least one image capture device to place an image of the trailing edge of the trailer in a field of view of the at least one image capture device.

18 . The method of claim 16 , wherein the at least one image capture device comprises a replacement for a side mirror.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2023
From: HAYES, THOMAS J.; PLOW, WILLIAM R.
To: BENDIX COMMERCIAL VEHICLE SYSTEMS LLC
Reel/Frame 064564/0614 →
Continuity (1)
Related Publication 20250050849A1 · Feb 13, 2025
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