Abstract:
An electronic apparatus includes: a front surface member that includes a concavity in which an insertion aperture is located, the insertion aperture for receiving an object to be inserted into the insertion aperture, a bottom surface of the concavity having a support; and a cover that removably fits into the concavity to cover the insertion aperture. The cover includes a slider having an arc-shaped cross section. In a state in which the cover is fitted in the concavity, the slider of the cover contacts the support provided at the bottom surface of the concavity. When a part of the cover is pushed, the cover rotates, while the slider slides along a surface of the support.
Abstract:
A first interpolation processor of an image processing apparatus performs a first interpolation process, using values of a plurality of input pixels of an input image aligned in an arranged direction that is one of a horizontal direction and a vertical direction. Thus, the first interpolation processor derives a value of each of a plurality of noted points on an inclined interpolation line inclined relative to the horizontal direction and extending through a location of a processed pixel of an output image. Moreover, second interpolation processor derives a value of the processed pixel by performing a second interpolation process, using the derived values of the plurality of noted points on the inclined interpolation line.
Abstract:
A visual line detection device according to an embodiment includes a detection unit, an acquisition unit, a determination unit, a calculation unit, and a calibration unit. The detection unit detects a visual line direction of a driver in a vehicle. The acquisition unit acquires a running state of the vehicle. The determination unit determines whether or not the running state acquired by the acquisition unit is a gazing state where the driver is gazing at a particular position. The calculation unit calculates a representative value for a detection result of the detection unit in a case where the determination unit determines that the running state is the gazing state. The calibration unit executes calibration for detection of the visual line direction by the detection unit in such a manner that the representative value calculated by the calculation unit is a reference thereof.
Abstract:
An image processing device according to an aspect of the embodiment includes a display controller and a determining unit. The display controller generates a synthesized image when viewing a perimeter of a vehicle from a virtual viewpoint based on an image from an image capturing device and causes a display unit to display the synthesized image. The determining unit determines, in a case where a screen other than a virtual viewpoint screen including the synthesized image is displayed on the display unit, whether a switching condition to a notification screen for notifying an occupant of presence of an obstacle is satisfied when the obstacle is detected by a detector. The display controller causes the display unit to display the notification screen obtained by superimposing a predetermined notification image on the virtual viewpoint screen, when the determining unit determines that the switching condition is satisfied.
Abstract:
A deterioration detecting apparatus includes: a capacitor that is connected to an insulated electric power source, and is charged and discharged; a voltage detecting unit that detects a voltage of the capacitor; and a deterioration detecting unit that detects a deterioration in an insulating resistor of the electric power source on the basis of the voltage of the capacitor charged through a charging path for detecting a deterioration in the insulating resistor of the electric power source, and the voltage of the capacitor during discharging.
Abstract:
An on-vehicle device operation apparatus according to an embodiment includes an operation part, an on-vehicle device control part, and a display control part. The operation part is provided in an inside of a vehicle and includes a plurality of operation switches. When one of the operation switches is pushed, the on-vehicle device control part controls an on-vehicle device depending on the pushed operation switch. The display control part causes a display part to display an image corresponding to the operation part. when a first operation switch with no assigned operation among the plurality of operation switches is pushed, the display control part causes the display part to emphatically display a portion corresponding to the first operation switch in the image corresponding to the operation part.
Abstract:
A vehicle control apparatus for performing control such that a vehicle follows a preceding vehicle, includes: a calculating unit that calculates a target time for an inter-vehicle distance deviation which is obtained by subtracting a target inter-vehicle distance from a measurement value of the inter-vehicle distance between the vehicle and the preceding vehicle to be substantially 0; a correction unit that calculates a correction deceleration larger than a target deceleration in a case where the inter-vehicle distance deviation provides a deviation corresponding to a position of the vehicle closer to the preceding vehicle than a position where the inter-vehicle distance deviation is substantially 0; and a control unit that controls a deceleration of the vehicle at a deceleration jerk according to a magnitude of the correction deceleration such that, when the target time comes, the inter-vehicle distance deviation is substantially 0.
Abstract:
An image generation apparatus that is used in a vehicle, the image generation apparatus includes: an image generator that temporally continuously generates a plurality of virtual viewpoint images showing a vicinity of the vehicle viewed from a virtual viewpoint, using a plurality of captured images acquired by a plurality of cameras; and a controller configured to control the image generator to: (i) temporally continuously change a position of the virtual viewpoint so that the plurality of virtual viewpoint images appear to be a moving image showing the vicinity of the vehicle in such a way as to go around the vicinity of the vehicle; (ii) acquire a detection result from a detector that detects an object existing in the vicinity of the vehicle; and (iii) determine a rotation direction of the moving image based on a position of the object detected by the detector.
Abstract:
An object detection apparatus that detects an object in a vicinity of a vehicle includes: (a) an image processing circuit configured to: (i) derive vectors representing movement of feature points in captured images acquired periodically by a camera that captures images of the vicinity of the vehicle; and (ii) detect the object based on the vectors; and (b) a controller configured to (i) acquire a velocity of the vehicle; and (ii) set a parameter that affects a number of the feature points based on the velocity of the vehicle.
Abstract:
An operation device, includes: a touch sensor; a deriving unit that acquires information representing a point on the touch sensor subjected to an operation, and derives an amount of the operation on the basis of the point information; and a tactile sensation giving unit that gives a tactile sensation to an operator, in which the tactile sensation giving unit gives a first tactile sensation at intervals of a first operation amount from an operation start point.