Abstract:
In a motor vehicle having motor vehicle exterior lighting devices and an operator control device, the following lighting modes of the motor vehicle exterior lighting devices can be set: deactivated, parking light, daytime running light, forwarding lighting, and automatic mode in which the motor vehicle exterior lighting devices are operated by an automatic forward light controller. The operator control device further has a single monostable operator control element by which the lighting modes can be set; or the operator control device has a monostable operator control element by which the deactivated, parking light, daytime running light and forward lighting lighting modes can be set. The operator control device has a pushbutton key or a toggle lever by which the automatic mode can be set.
Abstract:
In a motor vehicle having motor vehicle exterior lighting devices and an operator control device, the following lighting modes of the motor vehicle exterior lighting devices can be set: deactivated, parking light, daytime running light, forwarding lighting, and automatic mode in which the motor vehicle exterior lighting devices are operated by an automatic forward light controller. The operator control device has a single monostable operator control element by which the lighting modes can be set; or the operator control device has a monostable operator control element by which the deactivated, parking light, daytime running light and forward lighting lighting modes can be set. The operator control device has a pushbutton key or a toggle lever by which the automatic mode can be set.
Abstract:
A system and method for configuring an indication device is described. An on-demand service system arranges a transport service for a user to be provided by a driver. The system determines whether the user has specified an output configuration for an indication device in an account of the user. In response to determining that the user has specified an output configuration for the indication device, the system identifies data corresponding to the output configuration and transmits the data to a driver device of the driver to enable the driver device to control the indication device of the driver based on the data.
Abstract:
Systems for a vehicle include a sound system that detects and compensate for objects that block or muffle sound in the interior of the vehicle; light bars positioned under the headliner of the vehicle or on the front or back of the vehicle that can emulate headlights, taillights, brake lights and turn lights; external light fixtures that are symmetrical around a centerline and can be placed at any position on the front or back of the vehicle without structural change and a collision detection system.
Abstract:
A vehicle lighting system is provided herein. A spotlight is coupled to a vehicle and is configured to project light in a target direction. A controller is configured to wirelessly send command signals to the spotlight. A user-input device is in communication with the controller and is provided on a steering wheel of the vehicle. The command signals are based on user-input and control at least one of an aim direction and a light activation of the spotlight.
Abstract:
A system and method for configuring an indication device is described. An on-demand service system arranges a transport service for a user to be provided by a driver. The system determines whether the user has specified an output configuration for an indication device in an account of the user. In response to determining that the user has specified an output configuration for the indication device, the system identifies data corresponding to the output configuration and transmits the data to a driver device of the driver to enable the driver device to control the indication device of the driver based on the data.
Abstract:
A system for displaying contextually-sensitive braking information on a surface of a vehicle is presented. The system may include a transceiver, one or more memories, an electronic display disposed on the surface, and one or more processors. The one or more processors may be configured to detect a braking event of the vehicle, wherein the braking event has an associated braking force. The one or more processors may compare the braking force to a predetermined threshold braking force to determine whether the braking force exceeds the threshold braking force. The one or more processors may further cause the electronic display to display a braking indication having an intensity that is proportional to the braking force, wherein the braking indication may include a braking rationale corresponding to the braking event in response to determining that the braking force exceeds the threshold braking force.
Abstract:
A vehicle illumination system provided to a vehicle capable of traveling in an autonomous driving mode includes: an autonomous driving system (ADS) lamp configured to emit light toward an outside of the vehicle, thereby visually presenting information relating to an autonomous driving of the vehicle; and an illumination controller configured to change an illumination feature of the ADS lamp under a predetermined condition, in correspondence to a current traveling area in which the vehicle is currently located.
Abstract:
A system and method for configuring an indication device is described. An on-demand service system arranges a service for a user to be provided by a service provider. The system determines whether the user has specified an output configuration for an indication device in an account of the user. In response to determining that the user has specified an output configuration for the indication device, the system identifies data corresponding to the output configuration and transmits the data to a mobile computing device of the service provider to enable the mobile computing device to control the indication device of the service provider based on the data.
Abstract:
The invention relates to an illumination module for a motor vehicle employing at least one organic electroluminescent diode. The module includes at least one conductor wire connecting a first conductor terminal of the at least one organic electroluminescent diode to a second conductor terminal of a support wherein at least one organic electroluminescent diode is received.