Abstract:
An image display control apparatus includes an image generating portion generating a display image to be displayed on a display apparatus, the display image including a mirror image of a vehicle outside image based on at least a part of a captured image in which at least a rear side of a vehicle is captured, a reference image setting portion being capable of setting a reference image corresponding to a position that is away towards the rear side of the vehicle, the reference image being set as an image to be included in the display image while the vehicle is moving forward, and a display control portion controlling the display apparatus so that the display image is displayed.
Abstract:
According to one embodiment, a vehicle periphery monitoring apparatus comprises: an outside-view camera; a display; and an image processor. The image processor is to acquire information about the position of a driver's viewpoint, information about the position of the display, information about the position of a virtual mirror for geometrically transforming an image picked up by the outside-view camera to an image viewed from the viewpoint, and to generate a mirror-displaying image to be displayed on the virtual mirror, from the information about the position of the viewpoint, information about the position of the display, information about the position of the virtual mirror and the image picked up by the outside-view camera. The image processor generates data representing a mirror frame surrounding the mirror-displaying image, and causes the display to display the mirror frame and the mirror-displaying image in the mirror frame.
Abstract:
An electronic mirror device includes: a display that is mounted on an installation position of a rear-view mirror in an interior of a vehicle; and a controller that controls the display. The display includes: a body case having an opening on a side of a driver seat of the vehicle; an image display unit that is mounted to the body case and displays the camera image; and a half mirror disposed at a side of the driver seat of the image display unit. The controller identifies an object moving in a direction toward the vehicle in the camera image, and displays a camera image in which a size of the identified object in a display image on the image display unit is magnified or reduced to a size of the object reflected in the half mirror viewed from the driver seat, on the image display unit.
Abstract:
A system for detecting a vehicle environment of a motor vehicle includes an exterior mirror which can be pivoted between a normal position and a folded position with respect to the vehicle. The system also includes a camera arranged on the exterior mirror for detecting the vehicle environment such that in the normal position a field of view of the camera is directed downwards in the direction of a road surface and in the folded position the field of view of the camera is directed backwards counter to the direction of travel for detecting a rear vehicle environment.
Abstract:
An in-vehicle display apparatus has a display unit mounted on a mounting position of a rearview mirror in a vehicle cabin of a vehicle. The display unit includes an image displaying unit that displays an image taken by an imager mounted to the vehicle, and a half mirror disposed in front of the image displaying unit. The display unit changes an image to be displayed according to a lighting state of an interior lamp.
Abstract:
A rear imaging device is provided. The rear imaging device is attached to a mobile object such as a vehicle, and is provided with an imaging device for imaging an area rearward of the mobile object, and a housing for housing the imaging device. At a rear end portion of the housing, drainer pieces are formed extending rearward. A plurality of the drainer pieces are formed in a circumferential direction of the housing. Tip end portions of the drainer pieces are formed narrower toward tip points thereof, with base portions of the adjacent drainer pieces being adjacent to each other.
Abstract:
A camera system for a vehicle has an image acquisition unit (2) having an image sensor (4), an optical element (3) and at least one IR-blocking filter (5) for acquiring image data of an object, a processing unit processing the image data acquired from the image acquisition unit (2) for displaying the object (7) on a display unit (9), and at least one illumination unit (10) for illuminating the object (7) with light (12) having a wavelength at least partly within the upper region (13) of sensitivity of the human eye and at least partly below the blocking limit of the IR-blocking filter (5).
Abstract:
A vehicle includes a vehicle body structure and a video camera assembly. The video camera assembly includes a base member, a video camera, a video display and an image processor. The base member is fixedly mounted to a side surface of the vehicle. The video camera is moveably supported to the base member for movement between a retracted orientation adjacent to the side surface and an extended orientation extended outward away from the side surface to capture a video image of an area outside the vehicle. The video display is supported within the vehicle such that the video display is visible within a passenger compartment of the vehicle. The image processor is operatively coupled to the video camera and the video display to process the video image captured by the video camera and to stream a video view to the video display.
Abstract:
A camera module for a vision system of a vehicle includes a housing, a circuit element and a lens. The housing has a base portion and a lens portion. The circuit element includes CMOS imaging sensor and associated circuitry. The CMOS imaging sensor has a dynamic range of greater than approximately 100 dB. The dynamic range of the imaging sensor may follow, at least in part, a non-linear response curve. The base portion and the lens portion are welded or sealed together to substantially limit water intrusion into the camera module and the camera module may include shielding to limit or reduce electronic noise. The camera module is configured for mounting at a rear portion of the vehicle so that the imaging sensor has a rearward field of view.
Abstract:
A system includes a camera mounted to a vehicle, a display in communication with the camera and configured to display an image detected by the camera, and a side mirror assembly. The side mirror assembly includes a side mirror moveable between a recessed position and a deployed position, and an actuator configured to deploy the side mirror into the deployed position. The system includes a status detector configured to detect a negative operational status of the camera, and, when the negative operation status is detected, cause the actuator to deploy the side mirror into the deployed position.