Systems and methods for detecting road obstructions
A vehicle having a camera disposed at a vehicle front portion is disclosed. The camera may be configured to capture images of a geographical area that may be occluded from a driver field of view caused by presence of a vehicle vertical body-mounted pillar when the vehicle traverses a road curve. The vehicle may further include a processor configured to obtain a trigger signal and activate the camera responsive to obtaining the trigger signal. The processor may be further configured to obtain the images from the camera and determine a road obstruction presence in the geographical area based on the obtained images. The processor may output a visual alert notification or an audible alert notification responsive to determining the road obstruction presence.
1 . A vehicle comprising:
a camera disposed at a vehicle front portion, wherein the camera is configured to capture images of a geographical area that is occluded from a driver field of view caused by a presence of a vehicle structural component when the vehicle traverses a road curve, and wherein the camera is further configured to continuously focus on an end of the road curve as the vehicle traverses the road curve;
a display; and
a processor communicatively coupled with the camera, wherein the processor is configured to:
obtain a trigger signal;
activate the camera responsive to obtaining the trigger signal;
obtain the images from the camera responsive to activating the camera;
determine a road obstruction presence in the geographical area based on applying an Artificial Intelligence (AI) based image processing algorithm to analyze the images;
generate an Augmented Reality (AR) image by overlaying a visual alert notification on the images captured by the camera, responsive to determining the road obstruction presence; and
display the AR image upon the display,
wherein the vehicle structural component is a vehicle vertical body-mounted pillar, and
wherein the vehicle is a left-hand drive vehicle, and further comprising:
a steering wheel; and
a steering wheel sensor configured to:
detect steering wheel rotation;
generate the trigger signal when the steering wheel is rotated in an anticlockwise direction that causes the vertical body-mounted pillar to obstruct the driver field of view; and
transmit the trigger signal to the processor.
2 . The vehicle of claim 1 , wherein the processor obtains the trigger signal from a user device, a vehicle infotainment system, or a camera actuator.
3 . The vehicle of claim 1 further comprising a vehicle cockpit comprising a display screen.
4 . The vehicle of claim 3 , wherein the processor is further configured to cause the display screen to display the images.
5 . The vehicle of claim 1 , wherein the camera is a one degree of freedom rotational camera.
6 . The vehicle of claim 5 , wherein the processor is further configured to:
determine a road curve end based on the images; and
control camera rotation angle such that a camera focus is aligned with the road curve end when the vehicle traverses the road curve.
7 . A vehicle comprising:
a camera disposed at a vehicle front portion, wherein the camera is configured to capture images of a geographical area that is occluded from a driver field of view caused by a presence of a vehicle structural component when the vehicle traverses a road curve, and wherein the camera is further configured to continuously focus on an end of the road curve as the vehicle traverses the road curve;
a display; and
a processor communicatively coupled with the camera, wherein the processor is configured to:
obtain a trigger signal;
activate the camera responsive to obtaining the trigger signal;
obtain the images from the camera responsive to activating the camera;
determine a road obstruction presence in the geographical area based on applying an Artificial Intelligence (AI) based image processing algorithm to analyze the images;
generate an Augmented Reality (AR) image by overlaying a visual alert notification on the images captured by the camera, responsive to determining the road obstruction presence; and
display the AR image upon the display,
wherein the vehicle structural component is a vehicle vertical body-mounted pillar, and
wherein the vehicle is a right-hand drive vehicle, and further comprising:
a steering wheel; and
a steering wheel sensor configured to:
detect steering wheel rotation;
generate the trigger signal when the steering wheel is rotated in a clockwise direction that causes the vertical body-mounted pillar to obstruct the driver field of view; and
transmit the trigger signal to the processor.
8 . The vehicle of claim 7 , wherein the processor obtains the trigger signal from a user device, a vehicle infotainment system, or a camera actuator.
9 . The vehicle of claim 7 further comprising a vehicle cockpit comprising a display screen.
10 . The vehicle of claim 9 , wherein the processor is further configured to cause the display screen to display the images.
11 . The vehicle of claim 7 , wherein the camera is a one degree of freedom rotational camera.
12 . The vehicle of claim 11 , wherein the processor is further configured to:
determine a road curve end based on the images; and
control camera rotation angle such that a camera focus is aligned with the road curve end when the vehicle traverses the road curve.