Night Driving System and Method
A system and method is presented for the enhancement of a user's vision using a head-mounted device. The user is presented with an enhanced view of the scene in front of them. One system and method reduces the glare from lights or the sun. Another system and method provides increased contrast for the darkest parts of a scene.
1 . A portable vision-enhancement system wearable by a user to view a brightness-modified scene, said system comprising:
a right digital camera which, when worn by the user, is operable to obtain right video images the scene in front of the user;
a left digital camera which, when worn by the user, is operable to obtain left video images of the scene in front of the user;
a left screen portion viewable by the left eye of the user;
a right screen portion viewable by the right eye of the user; and
a processor programmed to:
accept the left video images,
modify the accepted left video images by limiting the maximum brightness in the images to be less than a predetermined brightness,
provide the modified left video images for display on the left screen portion, accept the right video images,
modify the accepted right video images by limiting the maximum brightness in the images to be less than a predetermined brightness, and
provide the modified right video images for display on the right screen portion.
2 . The portable vision-enhancement system of claim 1 , where said processor is further programmed to:
modify the accepted left video images by increasing the contrast of the darkest portions of the images; and
modify the accepted right video images by increasing the contrast of the darkest portions of the images.
3 . The portable vision-enhancement system of claim 1 , where said portable vision-enhancement system is wearable by the driver of an automobile, and where said processor is further programmed to:
identify a potential driving hazard in the scene from an analysis of at least one of said left video images or said right video images; and
provide an indication of the potential driving hazard.
4 . The portable vision-enhancement system of claim 3 , where said processor is programmed to:
provide an indication of the potential driving hazard on at least one of said left screen portions or said right screen portions.
5 . The portable vision-enhancement system of claim 3 , where said processor is programmed to:
provide an audible indication of the potential driving hazard.
6 . The portable vision-enhancement system of claim 1 , where said processor is further programmed to provide driving directions on at least one of said left screen portions or said right screen portions.
7 . The portable vision-enhancement system of claim 1 , where each of said pair of digital camera has a field of view of at least 120 degrees.
8 . The portable vision-enhancement system of claim 1 , where said processor accepts and provides images at least 60 frames per second.
9 . The portable vision-enhancement system of claim 1 , where said right digital camera and said left digital camera obtain images in the near infrared.
10 . A method of enhancing vision for a user using a system with a left digital camera operable to obtain left images of a scene, a right digital camera operable to obtain right images of a scene, a left screen portion to provide a left image to the left eye of a user, a right screen portion to provide a right image to the right eye of the user, and a processor to accept images from the cameras and provide processed images to the screens, said method comprising:
accepting the left video images;
modifying the accepted left video images by limiting the maximum brightness in the images to be less than a predetermined brightness;
displaying the modified left video images on the left screen portion;
accepting the right video images;
modifying the accepted right video images by limiting the maximum brightness in the images to be less than a predetermined brightness; and
displaying the modified right video images on the right screen portion.
11 . The method of claim 10 , further comprising:
modifying the accepted left video images by increasing the contrast of the darkest portions of the images; and
modifying the accepted right video images by increasing the contrast of the darkest portions of the images.
12 . The method of claim 10 , where the system is wearable by the driver of an automobile, said method further comprising:
identifying a potential driving hazard in the scene from an analysis of at least one of said left video images or said right video images; and
providing an indication of the potential driving hazard.
13 . The method of claim 12 , further comprising:
providing an indication of the potential driving hazard on at least one of said left screen portions or said right screen portions.
14 . The method of claim 12 , further comprising:
providing an audible indication of the potential driving hazard.
15 . The method of claim 12 , further comprising:
providing driving directions on at least one of said left screen portions or said right screen portions.
16 . The method of claim 10 , where said left digital camera has a field of view of at least 120 degrees, and where said right digital camera has a field of view of at least 120 degrees.
17 . The method of claim 10 , where said steps are executed at least 60 frames per second.