Abstract:
A method is provided for content-based adjustment of visibility of content on a display unit. The method includes subdividing content to be displayed on a display unit into a number of regions; evaluating the content in at least one region with respect to its distraction effect; adjusting the display view in the at least one region on the basis of the evaluation carried out. Furthermore, a display unit configured according to the method is provided.
Abstract:
An example operation includes one or more of analyzing data related to content being delivered to occupant devices in a vehicle; and notifying the devices of additional functionality related to the vehicle based on the analyzing.
Abstract:
An image capture device is mounted in a vehicle. The image capture device includes: an image capture unit; and a setting unit that sets an image capture condition for each region of the image capture unit each having a plurality of pixels, or for each pixel, based upon at least one of a state exterior to the vehicle and a state of the vehicle.
Abstract:
A dashboard display for a vehicle, and including a light source unit including a plurality of light sources disposed in a matrix form; a display unit configured to display speedometer information using light provided from the light source unit; a needle positioned on the speedometer information and rotatably moving according to a speed of the vehicle; and a processor configured to control the light source unit to emit a predetermined brightness in a region at least partially surrounding the needle, and vary the region at least partially surrounding the needle according to a position of the needle.
Abstract:
An information processing and display device may include a display device, an input unit that accepts user operations, and a processing unit that performs processing related to a plurality of functions according to a program stored in a storage unit. The processing unit sets a plurality of divided regions on the display and can change demarcation of these set divided regions according to a user operation. When executing a process of generating display data related to the plurality of functions by dividing the information display related to the plurality of functions into a plurality of divided regions, the processing unit prioritizes execution of a process related to a function for which information is displayed in a divided region set to be the largest among the plurality of functions over processes related to other functions.
Abstract:
The invention relates to a method for operating an interactive visibility screen on a transparent pane of a pane device, in particular in a motor vehicle. The visibility screen is generated by means of a display unit of the pane device on the pane by pixel-wise fade-in of opaque image points, wherein the image points form a coherent visibility screen area. In the method, an operational action by the user is first detected by means of a detection device, which comprises a selection of a setting range and a movement relative to the pane. Subsequently, an expansion of the visibility screen area at the setting range is set as a function of the detected movement by means of a control device.
Abstract:
Provided are a projection type display device and an operation assistance method that enable an operator to enjoy an operation assistance function even in the case of occurrence of abnormality in an optical modulation unit or an image information input unit during operation of a vehicle. A system control unit 47 of a HUD, if sensing abnormality in an optical modulation device 44 and a drive unit 45, stops a light source unit 40 and, furthermore, in the case of image information generated by a projected image information generation unit 52 including image information that calls attention of the operator to the front field of view, displays an alert image based on the image information on a liquid crystal display device 61 in a meter cluster.
Abstract:
A display control device includes a determination unit and a controller. The determination unit determines whether or not a subject viewed from a passenger falls within a display range of a virtual image based on the position information of the subject acquired from a recognition unit that recognizes the subject in the foreground of a moving object and the estimated value of a depression angle acquired from an estimation unit that estimates the depression angle when the virtual image is viewed from the passenger. In a case where the subject is determined to fall within the display range, the controller controls a display unit to generate an image that represents a first display image showing the information corresponding to the subject.
Abstract:
A system includes a gaze tracker configured to provide gaze data corresponding to a direction that an operator is looking. One or more processors are configured to analyze the gaze data to determine whether a display is in a central vision of the operator or whether the display is in a peripheral vision of the operator. The processors are further configured to provide a first type of image data to the display if the display is in the central vision and a second type of image data to the display if the display is in the peripheral vision. The first type of image data includes first three-dimensional (3D) image data that produces a first 3D image when the display is within the central vision. The second type of image data includes second 3D image data that produces a second 3D image when the display is within the peripheral vision.
Abstract:
A spread assist device for assisting spreading by a spreader apparatus according to an embodiment includes a position detector configured to detect a position of the spreader apparatus and a controller. The controller is configured to obtain spread width information indicating a spread width of the spreading object to be spread by the spreader apparatus, obtain tracking information of the detected position of the spreader apparatus detected by the position detector, and generate a virtual overhead view image including a spread path based on the obtained spread width information and tracking information.