Patent classifications
B60R2300/70
SYSTEM AND METHOD FOR SELECTIVELY DISPLAYING IMAGES IN AN AUTONOMOUS VEHICLE
Arrangements herein relate to a method and system for selectively displaying surroundings of an autonomous vehicle. The system can include a display to display a plurality of images in which some of the images are images of an environment external to the autonomous vehicle and are images unrelated to the environment external. The system can include cameras to capture the images of the environment external. The system can further include a processor that can be configured to detect a handover event associated with the operation of the vehicle. In response to the detection of the handover event and if the display is displaying images unrelated to the environment external, the processor can also cause the display to display images of the environment external in the place of the images unrelated to the environment external.
Method for providing driver information in a motor vehicle
A method provides driver information in a motor vehicle, in which method a recording device of the motor vehicle captures an image flow containing images of at least one part of the environment of the motor vehicle. A display unit in the interior of the motor vehicle reproduces at least one image section of the image flow. A display control unit of the motor vehicle automatically modifies the environmental section shown to the driver by reproducing the image section using the display unit. During the reproduction of the image section, in addition to the representation of the environmental section, at least first optical information relating to the position of the environmental section relative to the motor vehicle is output to the driver.
Car side video assist system activated by light signal
A car side video assist system activated by light signals is revealed. The system includes at least two cameras respectively disposed on the left, right or rear side of a car for capturing images at corresponding sides and forming image signal sources. By using different light signals including left/right turn, warning or reversing signals as the activation signal sources, at least one camera is selected and activated and the images capture form at least one image/picture on a screen. The video signal source switch processor further includes a light signal interpretation processor that starts interpretation after a preset critical time such as 8 milliseconds when a light signal is activated and input. The interpretation continues for a preset period of time such as 300 milliseconds to output the result for preventing misinterpretation and interpreting the light signal is a single left/right turn signal or a warning signal accurately.
IMAGE RECORDING DEVICE FOR A VEHICLE AND IMAGE RECORDING METHOD FOR A VEHICLE
An image recording device for a vehicle includes: an image acquisition section configured to acquire a surroundings image in which vehicle surroundings have been captured; an image display section configured to display an overlaid image in a display region inside a vehicle cabin in a case in which a predetermined assisted driving condition has been satisfied, the overlaid image being configured by an assistance image overlaid on the surroundings image acquired by the image acquisition section; and an image recording section configured to record the overlaid image at a recording section during an assisted driving state in which the overlaid image is being displayed in the display region, and, in a case in which the assisted driving state is not in effect, record at the recording section an image that has been subjected to image processing including processing to render a state in which the assistance image is not visible.
Method and System for Representing Vehicle Surroundings of a Motor Vehicle on a Display Device Located in the Motor Vehicle
A method is for representing vehicle surroundings on a display device arranged in a motor vehicle, which has a first camera for detecting a first surrounding region of the motor vehicle and a second camera for detecting a second surrounding region of the motor vehicle. The first and second surrounding regions have an overlapping area. The method involves: receiving an activation signal to represent the first surrounding region on the display device; upon receiving the activation signal, detecting whether there is a malfunction of the first camera; representing the first surrounding region on the display device when there is no malfunction of the first camera; and representing at least part of the second surrounding region on the display device as an alternative when there is a malfunction of the first camera.
Imaging and display system for vehicle
A vehicular vision system includes first, second, third and fourth cameras having respective forward, rearward, sideward and sideward fields of view. A video processor is operable to process second image data captured by the second or rearward viewing camera. A video display screen displays video images derived, at least in part, from captured second image data. The video processor includes an image processor operable for machine vision analysis of first image data captured by the first or forward viewing camera. During a reversing maneuver of the vehicle, the video display screen displays video images derived, at least in part, from captured second image data. During forward travel of the vehicle and responsive to the image processor processing captured first image data to detect a road sign ahead of the vehicle, an image or iconistic representation of the detected road sign is displayed by the video display screen.
Driving assistance device
A driving assistance device includes: an image capturing part configured to image-capture a rear lateral area of a host vehicle and a dead angle area; a display part configured to display a video image captured by the image capturing part; and a blinker switch configured to make a signal of a movement of the host vehicle to a first side or a second side. The display part displays the video image according to a turn on of the blinker switch indicating a movement of the vehicle to the second side, turns off the display of the video image when a predetermined amount of time elapses after the blinker switch is turned off, and turns off the display of the video image before the predetermined amount of time elapses when it is predicted that the host vehicle moves to the first side within the predetermined amount of time.
Shifting a road view based on a speed for a vehicle
Embodiments are disclosed for shifting a road view of a display for a vehicle. For one embodiment, a system determines a vehicle has come to a standstill. Upon determining that the vehicle has come to a standstill, the system automatically shifts a display of a first view for the vehicle to a second view. The system determines the vehicle is in motion after being in a standstill. Upon determining that the vehicle is in motion after being in a standstill, the system automatically shifts a display of the second view for the vehicle back to the first view. For one embodiment, the first view includes a third-person view and the second view includes an overhead view.
IMAGE DISPLAY CONTROL DEVICE AND IMAGE DISPLAY SYSTEM
An image display control device according to an embodiment includes an image generator configured to generate a display image to be displayed on a display device, the display image containing a vehicle exterior image based on at least a part of a captured image by an imager an imaging area of which is from a direction in which a rear end of a vehicle body can be captured to a direction upward from a horizontal direction and a rearward of a vehicle; an area changer configured to change an area of the captured image to be contained in the display image for forward travel and backward travel of the vehicle; and a display controller configured to control the display device to display the display image.
Display control device, display device, display control method, and non-transitory storage medium
A display control device includes an obtainer and a controller. The obtainer obtains a detection accuracy of an object that exists in surroundings of a movable body. When the obtainer obtains a first detection accuracy, the controller controls an image generator so as to generate a first predetermined image that shows a first graphic having a predetermined shape and divided into n regions (n is an integer greater than or equal to 2). When the obtainer obtains a second detection accuracy that is lower than the first detection accuracy, the controller controls the image generator so as to generate a second predetermined image that shows a second graphic having a predetermined shape and undivided or divided into m regions (m is an integer that is greater than or equal to 1 and that is smaller than n).