System and method to automatically set the height of the torso section of a seat belt
A vehicle, system and a computer-implemented method for setting a height of a seat belt in a vehicle. The system includes a computer vision module, a motor and a controller. The computer vision module determines a seatbelt-neck distance (SND) and a seatbelt-shoulder distance (SSD) for an occupant of the vehicle. The motor adjusts the height of the seat belt. The controller control the motor to set the height of the seat belt based on the SND and the SSD.
1. A computer-implemented method for setting a height of a seat belt in a vehicle, comprising:
determining, using a computer vision module, a centerline of the seat belt;
determining, using the computer vison module, a seatbelt-neck distance (SND) by minimizing a distance between points of the centerline and a neck location for an occupant of the vehicle and a seatbelt-shoulder distance (SSD) by minimizing a distance between points of the centerline and a shoulder location for the occupant of the vehicle; and
setting the height of the seat belt based on the SND and the SSD via a controller.
2. The method of claim 1 , further comprising determining the neck location and the shoulder location using a neural network.
3. The method of claim 1 , further comprising setting the height of the seat belt so that the SND is approximately equal to the SSD.
4. The method of claim 1 , further comprising controlling, via the controller, a motor to adjust the height of the seat belt.
5. The method of claim 4 , wherein the motor rotates a threaded pillar to move a threaded carrier along a length of the threaded pillar to set the height of the seat belt.
6. A system for setting a height of a seat belt in a vehicle, comprising:
a computer vision module configured to determine a centerline of the seat belt, determine a seatbelt-neck distance (SND) by minimizing a distance between points of the centerline and a neck location for an occupant of the vehicle, and determine a seatbelt-shoulder distance (SSD) by minimizing a distance between points of the centerline and a shoulder location for the occupant of the vehicle;
a motor configured to adjust the height of the seat belt; and
a controller configured to control the motor to set the height of the seat belt based on the SND and the SSD.
7. The system of claim 6 , wherein the computer vision module further comprises a neural network configured to determine the neck location and the shoulder location.
8. The system of claim 6 , wherein the motor rotates a threaded pillar to move a threaded carrier along a length of the threaded pillar to set the height of the seat belt.
9. The system of claim 6 , wherein the controller sets the height of the seat belt so that the SND is approximately equal to the SSD.
10. The system of claim 6 further comprising an interface allowing the occupant to adjust the height of the seat belt.
11. A vehicle, comprising:
a computer vision module configured to determine a centerline of the seat belt, determine a seatbelt-neck distance (SND) by minimizing a distance between points of the centerline and a neck location for an occupant of the vehicle, and determine a seatbelt-shoulder distance (SSD) by minimizing a distance between points of the centerline and a shoulder location for the occupant of the vehicle;
a motor configured to adjust a height of the seat belt; and
a controller configured to control the motor to set the height of the seat belt based on the SND and the SSD.
12. The vehicle of claim 11 , wherein the computer vision module further comprises a neural network configured to determine the neck location and the shoulder location.
13. The vehicle of claim 11 , wherein the motor rotates a threaded pillar to move a threaded carrier along a length of the threaded pillar to set the height of the seat belt.
14. The vehicle of claim 11 , wherein the controller sets the height of the seat belt so that the SND is approximately equal to the SSD.