IP Library › Granted Patent US 12,735,104
Granted Patent B2
US 12,735,104 · App. 19/071,040 · Granted Sep 15, 2026

Measuring systems and methods for steering angles of vehicles

Inventors: Nicolai Wengert (Burgstetten, DE); Florian Kuehnle (Stuttgart, DE); Malte Ricklefs (Kernen, DE)
Assignee: TORC ROBOTICS, INC.
B62D15/024G06T7/74G06T2207/30268
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Quick Facts
Patent No.
US 12,735,104
App. No.
19/071,040
Granted
Sep 15, 2026
Kind
B2
Abstract

A steering angle detection assembly for measuring a steering angle of an autonomous vehicle is provided. The steering angle detection assembly includes at least one camera, at least one marker, and one or more processors in communication with at least one memory device. The steering angle detection assembly is operable to cause the at least one camera to capture one or more images of the marker. The steering angle detection assembly is operable to determine a position of the at least one marker in the one or more images and determine a steering angle of the autonomous vehicle.

Claims (65)

1 . A steering angle detection assembly for measuring a steering angle of a vehicle, the steering angle detection assembly comprising:

a camera configured to capture one or more images of an angle marker positioned on a tie rod of a vehicle, the camera configured to be mounted on the vehicle at a location stationary relative to an axel of the vehicle;

at least one memory device; and

at least one processor in communication with the at least one memory device, the at least one processor programmed to:

receive a first image of the angle marker;

compare the first image with a reference image of the angle marker;

determine a position of the angle marker based on comparison of the first image with the reference image;

determine a steering angle based at least in part on the position of the angle marker; and

output the steering angle.

2 . The steering angle detection assembly of claim 1 , further comprising a reference marker positioned at a location of the vehicle stationary relative to the camera and in a field of view of the camera.

3 . The steering angle detection assembly of claim 2 , wherein:

the one or more images further include the reference marker in at least one image of the one or more images; and

the at least one processor is further programmed to:

determine positions of the reference marker in the one or more images;

determine vibration of the camera based on the positions of the reference marker; and

determine the steering angle by removing the vibration from the steering angle.

4 . The steering angle detection assembly of claim 1 , wherein the at least one processor is further programmed to:

reduce vibration in positions of the angle marker by filtering signals of the steering angle.

5 . The steering angle detection assembly of claim 1 , wherein:

the camera is removably attached at a mounting location on the vehicle.

6 . The steering angle detection assembly of claim 5 , further comprising a mounting assembly, wherein the mounting assembly comprises:

a fixed portion fixedly coupled with the vehicle; and

a removable portion removably coupled with the fixed portion and configured to be coupled with the camera.

7 . The steering angle detection assembly of claim 1 , further comprising a cleaning system configured to remove obstructions from a field of view of the camera.

8 . The steering angle detection assembly of claim 1 , wherein the at least one processor is further programmed to:

determine a change in position of the angle marker based on comparison of the one or more images with the reference image;

determine a change in steering angle based at least in part on the change in position of the angle marker; and

output the change in steering angle.

9 . The steering angle detection assembly of claim 1 , further comprising a light source configured to illuminate a field of view of the camera.

10 . A method of measuring a steering angle of a vehicle, the method comprising:

receiving one or more images of an angle marker positioned on a tie rod of a vehicle, the one or more images captured by a camera, the camera configured to be mounted on a vehicle at a location stationary relative to an axle of the vehicle;

comparing a first image of the one or more images with a reference image of the angle marker;

determining a position of the angle marker based on the comparison of the first image with the reference image; and

determining a steering angle based at least in part on the change in position of the angle marker.

11 . The method of claim 10 ,

wherein the one or more images further include a reference marker, the method further comprising:

determining a position of the reference marker;

determining vibration of the camera based on the position of the reference marker; and

determining the steering angle by removing the vibration from the steering angle.

12 . The method of claim 10 , wherein the method further comprises:

determining a change in position of the angle marker based on comparison of the one or more images with the reference image; and

determining a change in steering angle based at least in part on the change in position of the angle marker.

13 . The method of claim 10 , wherein the method further comprises

reducing vibration in positions of the angle marker by filtering signals of the steering angle.

14 . The method of claim 10 , further comprising:

removing, via a cleaning system, obstructions from a field of view of the camera.

15 . The method of claim 10 , further comprising:

illuminating, via a light source, a field of view of the camera.

16 . One or more non-transitory machine-readable storage media for measuring a steering angle of a vehicle, the one or more non-transitory machine-readable storage media comprising a plurality of instructions stored thereon that, in response to being executed, cause a system to:

receive one or more images of an angle marker;

compare a first image of the one or more images with a reference image of the angle marker;

determine a position of the angle marker based on the comparison of the first image with the reference image; and

determine a steering angle based at least in part on the position of the angle marker.

17 . The one or more non-transitory machine-readable storage media of claim 16 ,

wherein the one or more images further comprises a reference marker, the plurality of instructions further causing the system to:

determine a position of the reference marker;

determine vibration of a camera based on the positions of the reference marker; and

determine the steering angle by removing the vibration from the steering angle.

18 . The one or more non-transitory machine-readable storage media of claim 16 , wherein the plurality of instructions further cause the system to:

determine a change in position of the angle marker based on comparison of the one or more images; and

determine a change in steering angle based at least in part on the change in position of the angle marker.

19 . The one or more non-transitory machine-readable storage media of claim 16 , wherein the plurality of instructions further cause the system to:

cause a cleaning system to remove obstructions from a field of view of the camera.

20 . The one or more non-transitory machine-readable storage media of claim 16 , wherein the plurality of instructions further cause the system to:

cause a light source to illuminate a field of view of the camera.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2025
From: WENGERT, NICOLAI; KUEHNLE, FLORIAN; RICKLEFS, MALTE
To: TORC ROBOTICS, INC.
Reel/Frame 070412/0054 →
Continuity (1)
Related Publication 20260264755A1 · Sep 10, 2026
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