Abstract:
A driving assistance apparatus includes an arrangement memory that stores a past captured image around a target parking region, a captured image acquisition section that acquires a present captured image around the target parking region at parking or departing with respect to the target parking region, and an obstacle specification section that specifies a non-stationary obstacle around the target parking region, based on a difference between the past captured image stored in the arrangement memory, and the present captured image acquired by the arrangement acquisition section. A report section performs a report indicating presence of a non-stationary object when approaching closely the non-stationary object.
Abstract:
A destination determination device for a vehicle includes: a communication unit that performs a wireless communication with a mobile terminal used by an occupant in the vehicle and having a destination search function; a search condition acquisition unit that acquires destination search conditions from the mobile terminal through the communication unit; a search unit that performs a destination search based on an AND search of a combined search condition in which a plurality of acquired destination search conditions are combined together when the search condition acquisition unit acquires the plurality of destination search condition; and a search result output unit that outputs a search result of the destination search performed by the search unit under the combined search condition.
Abstract:
In a vehicle, positional information of the vehicle and status determination information are serially acquired. Each time a user speaks a speech, speech data is acquired. A storage section stores the acquired speech data, and the positional information and status determination information acquired when the speech data is acquired, in association in a memory, as stored speech data, stored positional information, and stored status determination information. For each stored speech data in the memory, a determination is made whether a first status indicated by the stored positional information and stored status determination information associated with the stored speech data is similar to a second status indicated by the positional information and status determination information newly acquired at a current time. A reporting processor reports, to a driver, information based on the stored speech data when the determination is affirmed.
Abstract:
A driving assistance device includes: a risk degree obtaining portion obtaining a degree of a risk of an event threatening a safety of a driver when an occurrence of the event is predicted; a risk handling control portion controlling an execution of a risk handling measure by a risk handling unit against the event that is predicted; a risk factor obtaining portion obtaining a factor which causes the risk as a risk factor; and a presentation control portion controlling a presentation of information about the risk factor. The presentation control portion presents information indicating a presence of the risk factor when the risk handling control portion controls the risk handling unit not to execute the risk handling measure and the degree of the risk is equal to or higher than a predetermined value.
Abstract:
A driving assistance device includes: a risk degree obtaining portion obtaining a degree of a risk of an event threatening a safety of a driver when an occurrence of the event is predicted; a risk handling control portion controlling an execution of a risk handling measure by a risk handling unit against the event that is predicted; a risk factor obtaining portion obtaining a factor which causes the risk as a risk factor; and a presentation control portion controlling a presentation of information about the risk factor. The presentation control portion presents information indicating a presence of the risk factor when the risk handling control portion controls the risk handling unit not to execute the risk handling measure and the degree of the risk is equal to or higher than a predetermined value.
Abstract:
When the display is controlled by the head-up display used in the vehicle, prior to the display of the superimposed contents to be superimposed and displayed on the specific superimposed object existing in the foreground of the vehicle, the non-superimposed content which has substantially the same meaning as the superposed content to be superimposed and displayed on the foreground in a non-superimposed state on the superimposed object is superimposed and displayed on the foreground.
Abstract:
A vehicle control device includes: a carry-in state determination device that determines whether a portable terminal device to be carried into a vehicle is already carried into the vehicle; a pending process determination device that, when the carry-in state determination device determines that the portable terminal device is already carried into the vehicle, determines whether the portable terminal device has a pending process that is held in an unexecuted state; and a pending process control device that, when the pending process determination device determines that the portable terminal device has the pending process, enables the pending process to be executed by the portable terminal device in the vehicle.
Abstract:
A driving assistance apparatus includes a proximity detection section that detects an obstacle within a set distance, a behavior regulation section that performs a forced braking of a vehicle when the obstacle is detected by the proximity detection section, an arrangement memory that stores a past captured image around a target parking region, a captured image acquisition section, that acquires a present captured image around the target parking region at parking or departing with respect to the target parking region, and an obstacle specification section that specifies a non-stationary obstacle around the target parking region, based on a difference between the past captured image stored in the arrangement memory and the present captured image acquired by the arrangement acquisition section. The proximity detection section assigns a stationary object with the set distance that is smaller than the set distance assigned to a non-stationary object.
Abstract:
An information display system displaying different information on each of a plurality of display units includes: a sight line specifying portion that specifies a line of sight of a driver; a cognition display unit specifying portion that specifies, as a cognition display unit, one of the display units being in a direction of the line of sight; a non-cognition display unit specifying portion that specifies, as a non-cognition display unit, a different one of the display units; a priority order assignment portion that assigns a priority order to the non-cognition display unit or displayed information; and a guide process execution portion that executes a guide process in which the line of sight is guided to the non-cognition display unit or the display unit.
Abstract:
A vehicular display device includes: an information screen display device that displays an information screen on a display unit when a vehicle stops; a gazing point position identifying device that identifies a position of a driver's gazing point; a gazing point position determining device that determines whether a gazing point position is disposed on the display unit; a monitoring device that starts monitoring of a peripheral situation of the vehicle when the gazing point position is disposed on the display unit; a startable state determining device that determines whether the vehicle is in a startable state, based on the peripheral situation; a situation screen display device that displays a situation screen on a rear side of the information screen in a superimposed manner when the vehicle is in the startable state; and a transparentizing device that transparentizes the information screen.