Abstract:
A vehicle system to assist a driver during a potential passing event of a passing vehicle includes a transceiver and a display. A passing assist module in communication with the transceiver and the display is configured to cause the transceiver to establish a wireless connection with a remote transceiver of a target vehicle and to receive a remote video signal from a camera and the remote transceiver associated with the target vehicle and cause the display of the passing vehicle to output at least one of a video signal and an image based on the remote video signal from the target vehicle.
Abstract:
Methods and systems for automatically controlling a vehicle are disclosed. In one embodiment, a system includes an actuator configured to control one or more vehicle driving characteristics, at least one vehicle sensor configured to measure a vehicle characteristic, a remote assistant in communication with the vehicle, and a controller in communication with the actuator, the at least one vehicle sensor, and the remote assistant, the controller being programmed with an automated driving system control algorithm and configured to determine whether a failsafe condition has occurred based on sensor data from the at least one vehicle sensor, receive a control signal from the remote assistant, and automatically control the actuator based on the control signal.
Abstract:
Methods and systems are provided for transmitting video data associated with a vehicle. In one exemplary embodiment, a vehicle processor determines a vehicle safety event based on one or more safety sensors, activates one or more vehicle cameras that capture video data in response to the determined vehicle safety event, records the video data in a vehicle data storage device, and, if the vehicle processor determines that a suitable connection to a telecommunications network is available when the video data is being captured, then transmits the video data over the telecommunications network in substantially real time.
Abstract:
A system and method are provided for operating an adaptive cruise control system of a host vehicle. The method includes receiving data measured from a plurality of sensors, wherein the measured data relates to one or more target vehicles in the host vehicle's field of view. The method further includes generating a following score for each target vehicle based on the measured data and controlling the host vehicle response based on the following score.
Abstract:
A system for predicting a door opening event of a vehicle includes an identity recognition device associated with an individual occupant profile. The system also includes one or more controllers in electronic communication with the identity recognition device, where the one or more controllers store one or more individual occupant profiles in memory of the one or more controllers that includes historical occupant behavior exhibited by one or more occupants associated with the identity recognition device. The one or more controllers execute instructions to determine a predetermined condition has occurred, where the predetermined condition indicates the vehicle is undergoing a potential engine off event. The one or more controllers determine a door opening event probability value based on at least the gear position probability value and the engine off probability value.
Abstract:
A system for predicting a door opening event of a vehicle includes an identity recognition device associated with an individual occupant profile. The system also includes one or more controllers in electronic communication with the identity recognition device, where the one or more controllers store one or more individual occupant profiles in memory of the one or more controllers that includes historical occupant behavior exhibited by one or more occupants associated with the identity recognition device. The one or more controllers execute instructions to determine a predetermined condition has occurred, where the predetermined condition indicates the vehicle is undergoing a potential engine off event. The one or more controllers determine a door opening event probability value based on at least the gear position probability value and the engine off probability value.
Abstract:
Methods and systems are provided for automation of a side mirror of a vehicle. In one example, a side mirror is disposed on a side of the vehicle, and a camera is mounted on the side mirror. A processor is configured to at least facilitate determining whether a condition has been satisfied with respect to a vehicle having a side mirror, and providing instructions for automatic movement of the side mirror from a first position to a second position, when it is determined that the condition has been satisfied. An actuator is coupled to the processor, and is configured to move the side mirror from the first position to the second position based on the instructions provided by the processor when it is determined that the condition has been satisfied.
Abstract:
A system according to the present disclosure includes an estimated hitch angle module, a measured hitch angle module, a corrected hitch angle module, and at least one of a driver assist module and an actuator control module. The estimated hitch angle module estimates a hitch angle, which is an angle between a longitudinal axis of a vehicle and a longitudinal axis of a trailer that is attached to the vehicle. The measured hitch angle module determines a measured hitch angle based on an input from a sensor. The corrected hitch angle module determines a corrected hitch angle based on the estimated and measured hitch angles. The driver assist module controls a user interface device to assist a driver of the vehicle based on the corrected hitch angle. The actuator control module controls an actuator of at least one of the vehicle and the trailer based on the corrected hitch angle.
Abstract:
A product may include a lens and a shade. A field of view may be defined through the lens. An actuator may selectively position the shade within the field of view.
Abstract:
A system and method are provided for operating an adaptive cruise control system of a host vehicle. The method includes receiving data measured from a plurality of sensors, wherein the measured data relates to one or more target vehicles in the host vehicle's field of view. The method further includes generating a following score for each target vehicle based on the measured data and controlling the host vehicle response based on the following score.