Abstract:
A vehicular driving control system for performing vehicular driving control based on automated driving and/or driving assistance is provided. The vehicular driving control system includes a driver operation measuring instrument that measures driving operation of a driver, a user uneasiness degree measuring instrument that measures how large a degree of uneasiness of a user is, and a driving control apparatus. When it is determined that the user feels uneasy based on the user uneasiness degree, the driving control apparatus determines an uneasiness factor serving as a source of the uneasiness based on user property data in relation to a traveling situation of a vehicle. Based on the determined uneasiness factor, the driving control apparatus adjusts a control degree of the vehicular driving control, and changes the vehicular driving control so as to decrease the uneasiness of the user.
Abstract:
An electronic device for a vehicle includes: a digital substrate having a first semiconductor package with a CPU, a second semiconductor package with a volatile memory readable and writable from the CPU, a third semiconductor package with a flash memory storing a start-up program of the CPU, and a fourth semiconductor package with a power supply management integrated circuit; and a fan that takes in air along the surface of the digital substrate on which the first to fourth semiconductor packages are mounted. The third semiconductor package is disposed to distance from the first semiconductor package by at least a first predetermined distance and to distance from the fourth semiconductor package by at least a second predetermined distance exceeding the first predetermined distance, and is disposed in a passage of the air taken in by the fan.
Abstract:
A display control device for controlling a display unit in a vehicle, including a dedicated middleware that executes a dedicated application program on a vehicle side, a general purpose middleware that executes a general purpose application program from an external of the vehicle, and an interface that exchanges necessary information between the dedicate middleware and the general purpose middleware, includes: an activation device that activates the dedicated middleware first, and activates the general purpose middleware after the dedicated middleware; and a dedicated display control device that displays, before an activation of the general-purpose middleware is completed, a dedicated menu screen for activating the dedicated application program on the display unit via the dedicated middleware when the dedicated application program on the dedicated middleware is available.
Abstract:
An on-board device for a vehicle, includes a storage unit and a display processing unit. The storage unit is configured to store display information that is information for displaying certification information required to be displayed pursuant to laws and regulations on a display device. The display processing unit is configured to perform a process for displaying the certification information on an on-board display device that is the display device on-board the vehicle, using the display information stored in the storage unit.
Abstract:
In a unit device, a setup unit sets arrangement information, which indicates the position of each unit device in a state where a plurality of unit devices configure a unit device group, according to a sequence that conforms to the arrangement information of adjacent devices after the aforementioned group is configured. A storage unit stores the arrangement information configured by the setup unit. A provision control unit specifies the content of the information providing command, and by collating the content of the specified information providing command with the arrangement information stored in the storage unit, provides either of at least two or more states by means of a provision unit.
Abstract:
A pedestrian safety system includes a power transmission unit provided to a vehicle and transmitting an electric power, a power reception unit provided to a wearable member being wearable by a pedestrian and receiving the electric power transmitted from the power transmission unit, a power storage unit provided to the wearable member and storing the electric power received by the power reception unit, and at least one light emitting unit provided to the wearable member. The at least one light emitting unit performs a flash or illumination operation with a supply of the electric power stored in the power storage unit as an operational power. With this pedestrian safety system, pedestrian's safety can be properly ensured without disposing an operational power source of the light emitting unit on the pedestrian side.
Abstract:
A vehicular wireless power feeding system includes a portable apparatus, a vehicle-side wireless power feeding system and a notifier. The portable apparatus operates using power, which is stored in an attached battery. The vehicle-side wireless power feeding system has a wireless power feeder arranged in the vehicle and for wirelessly feeding power to a wireless power receiver of the portable apparatus. The notifier notifies of, as wireless power feeding information, information related to wireless power feeding from the wireless power feeder to the wireless power receiver.
Abstract:
A display control device for controlling a display unit in a vehicle, including a dedicated middleware that executes a program on a vehicle side, a general purpose middleware that executes general purpose application programs from an external of the vehicle, and an interface that exchanges necessary information between the dedicate middleware and the general purpose middleware, includes: an acquisition device that acquires vehicle information on a dedicated middleware side; a notification device that notifies a general purpose middleware side through the interface of a vehicle status based on the vehicle information; and an activation device that activates, on the general purpose middleware side, a target application program for realizing the display corresponding to the vehicle status among the general purpose application programs based on the vehicle status.
Abstract:
A data processing device includes: a first controller requiring a first activation time; a second controller requiring a second activation time, which is shorter than the first activation time; and a data processor for switching a mode, in which data is processed, between a first processing mode without collaboration with the first controller, and a second processing mode in collaboration with the first controller. The data processor processes data in the first processing mode after completing the activation of the second controller and before completing the activation of the first controller; processes data in the second processing mode after completing the activation of the first controller; and processes data in the first processing mode after a fault occurs in the first controller.