Abstract:
A drowsiness prevention device includes a psychological state estimator and a controller. The psychological state estimator estimates a psychological state of an occupant, based on a state of the occupant detected by a detection device. The controller causes an output device to output a first warning and a second warning which are for alerting the occupant. The psychological state estimator estimates a first psychological state of the occupant which is before the first warning is output and a second psychological state of the occupant which is after the first warning is output. The controller determines details of a second warning, based on only the second psychological state or based on both the first psychological state and the second psychological state.
Abstract:
The driving assistance device acquires, from an autonomous driving controller that determines an action of a vehicle during autonomous driving of the vehicle, action information indicating a first action that the vehicle is caused to execute. The driving assistance device acquires, from a detector that detects a surrounding situation and a travel state of the vehicle, detection information indicating a detection result. The driving assistance device determines a second action which is executable in place of the first action, based on the detection information. The driving assistance device generates a first image representing the first action and a second image representing the second action. The driving assistance device outputs the first image and the second image to a notification device such that the first image and the second image are displayed within a fixed field of view of a driver of the vehicle.
Abstract:
An image processing device includes an image processor, a display region determiner, and a zoom factor determiner. The display region determiner determines a position of a display image within a captured image based on information about an angle of the display device. The zoom factor determiner determines a zoom factor of the captured image based on information about pushing or pulling force to be applied to the display device. The image processor generates the display image to be displayed on the display device by processing the captured image using the position of the display image within the captured image, the zoom factor, and a predetermined zoom center.
Abstract:
A display control device includes: an acquirer that receives inclination information on an occupant's head in a mobile body from a detector; and a controller that controls a displayer to generate a predetermined image representing a presentation image superimposed on an object as viewed from the occupant, based on recognition results of the object and the inclination information. When the object is recognized, with the head not inclined, the controller causes the displayer to generate a first predetermined image representing a first presentation image including one or more first lines in which a line segment connecting both ends is horizontal, or with the head inclined, the controller causes the displayer to generate a second predetermined image representing a second presentation image including a second line which is obtained by inclining at least one of the first lines by an angle according to the inclination of the occupant's head.
Abstract:
A display control device includes: a detector that detects an operating state of a light emitting device that is provided to a vehicle and blinks; and an output controller that, when the detector detects an operation of the light emitting device, outputs a peripheral image captured by an imaging device that images a periphery of the vehicle at timing at which the light emitting device is off, and outputs notification information representing that the light emitting device is operating.
Abstract:
The electronic mirror device performs display by switching between an image captured by a rear camera which is mounted on a rear part of a vehicle and captures an image of an area behind the vehicle, and an image captured by a mirror camera which is mounted near a position where a rearview mirror is mounted and captures an image of an area behind the vehicle. This electronic mirror device includes an image display unit that performs display by switching between an image captured by the rear camera and an image captured by the mirror camera, and a controller that controls the image display unit. The controller switches the display on the image display unit between the image captured by the rear camera and the image captured by the mirror camera, when an image of an object of interest captured by the rear camera coincides with an image of the object of interest captured by the mirror camera.
Abstract:
A state determination device includes a calculator that receives multiple eye region images captured at different timings in a time interval from when a person opening eyes closes the eyes to when the person opens the eyes next and calculates a luminance value relating to multiple pixels included in each of the eye region images and a determiner, wherein the determiner calculates a time interval from a first time point when the luminance value relating to the pixels reaches a predetermined first luminance value for the first time to a second time point when the luminance value relating to the pixels reaches a second luminance value after the first time point; if a time interval from the first time point to the second time point is a first time interval, the determiner determines that the person is in a first state; if the time interval from the first time point to the second time point is a second time interval which is shorter than the first time interval, the determiner determines that the person is in a second state which differs from the first state; and the determiner outputs a determination result.
Abstract:
A display control apparatus includes a receiver that receives a recognition result of a change in environment around a vehicle, and a controller that controls an image generation apparatus to generate an image corresponding to a presentation image to be displayed on the display medium. The controller generates and outputs a control signal to the image generation apparatus to control the image generation apparatus based on the recognition result so as to deform the presentation image radially on the display medium such that the deformed presentation image moves toward at least one of sides of the display medium and disappears sequentially to the outside of the display medium across edges of the display medium.
Abstract:
A calibration device capable of calculating an installation parameter of a camera without storing graphical features of road marking in advance or without requiring another technique. An acquiring unit acquires images captured by the camera before and after a vehicle moves, and an extracting unit extracts two feature points from each of the images captured before and after the vehicle moves. A calculating unit calculates a camera installation parameter on the basis of a positional relationship of coordinates of the two feature points in the image before the vehicle moves and coordinates of the two feature points after the vehicle moves that correspond to the feature points before the vehicle moves.