Abstract:
A vehicular scalable integrated control system includes a plurality of cameras, a vehicular scalable integrated control unit, and a display screen for displaying video information to a driver of the vehicle. Visual image data captured by the cameras is processed by an image processor to detect objects in the fields of view of the cameras. The control unit determines a current geographical location of the vehicle and accommodates downloading of applications, which may include a tour guide application, with the tour guide application providing information associated with various geographical locations of a selected tour area. The control unit, responsive to a determination that the current geographical location of the vehicle is at a location identified in the tour guide application for the selected tour area, controls the display screen to display information associated with the identified location of the tour guide application and the current geographical location of the vehicle.
Abstract:
In a first aspect, the invention is directed to an illumination system for rearward illumination for a first vehicle. The illumination system includes a tail lamp assembly, a sensor and a controller for controlling the operation of the tail lamp assembly. If the controller determines that there are any oncoming second vehicles behind the first vehicle that are sufficiently close to the first vehicle, then the controller operates the tail lamp assembly in one mode. If the controller determines that there are no oncoming second vehicles behind the first vehicle that are sufficiently close to the first vehicle, then the controller permits the operation of the tail lamp assembly in another mode.
Abstract:
In a first embodiment, the invention is directed to a camera for mounting on a vehicle, including a lens member, an imaging element and an image processing board. The image processing board is separated sufficiently from the imaging element so as to impart relatively little heat generated during operation to the imaging element. The imaging element is positioned to receive video input from the lens member. The image processing board is configured to generate image processing board output data that relates to the video input received by the imaging element. The image processing board is positioned in a selected position to release heat along a heat path that is spaced from the imaging element. The camera may further include a vehicle interface board configured to communicate signals relating to the image processing board output data to a vehicle component.
Abstract:
In one aspect, a system for providing and displaying video information in a vehicle is provided. The system includes a display device having a video input, a first camera mountable at the rear of the vehicle, the first camera having a first video output, a second camera mountable at the passenger side of the vehicle, the second camera having a second video output, wherein the first video output and the second video output are connected in parallel to the video input of the display device, and a camera control device configured to keep no more than one camera activated at a time.
Abstract:
A vehicular display system having a camera for producing a video signal and a display device for displaying the video signal. The display device includes an integrity check to detect a defective video signal and alert the driver if a defective video signal has been detected.
Abstract:
In a first aspect, the invention is directed to an illumination system for rearward illumination for a first vehicle. The illumination system includes a tail lamp assembly, a sensor and a controller for controlling the operation of the tail lamp assembly. If the controller determines that there are any oncoming second vehicles behind the first vehicle that are sufficiently close to the first vehicle, then the controller operates the tail lamp assembly in one mode. If the controller determines that there are no oncoming second vehicles behind the first vehicle that are sufficiently close to the first vehicle, then the controller permits the operation of the tail lamp assembly in another mode.
Abstract:
System, methods, and apparatus are provided for wireless vehicle-to-vehicle sharing of multimedia data. The system includes a data storage device configured to store multimedia data packets transmitted by a system broadcast, a processor coupled to the data storage device and configured to determine a non-received group of multimedia data packets based on the stored multimedia data packets of the system broadcast, and a transceiver coupled to the processor. The transceiver is configured to receive multimedia data packets transmitted from the system broadcast and multimedia data packets transmitted from a system vehicle in response to the request signal. The method includes the steps of determining non-received multimedia data packets based on a system broadcast in a first wireless protocol, and requesting multimedia data packets of the non-received multimedia data packets in a second wireless protocol from system vehicles.
Abstract:
A vehicle radio system and a method of operating the vehicle radio system are provided in accordance with the present invention. The vehicle radio system includes a radio receiver that is configured to receive a radio signal from a broadcast station, a microphone that is configured to receive an audible from an operator of the vehicle radio system and generate an audible signal from said audible and a tuning module configured to receive the radio signal from the radio receiver and the audible signal from the microphone. The tuning module includes a storage module configured to store a first phoneme string and a first channel number associated with the first phoneme string, a voice recognition engine configured to compare a phoneme in the audible signal with the first phoneme string stored in the storage module and a tuner configured to tune the radio receiver to the first channel number when the voice recognition engine identifies the phoneme as the first phoneme string.
Abstract:
A vehicular scalable integrated control system includes a plurality of cameras, a vehicular scalable integrated control unit, and a display screen for displaying video information to a driver of the vehicle. Visual image data captured by the cameras is processed by an image processor to detect objects in the fields of view of the cameras. The control unit determines a current geographical location of the vehicle and accommodates downloading of applications, which may include a tour guide application, with the tour guide application providing information associated with various geographical locations of a selected tour area. The control unit, responsive to a determination that the current geographical location of the vehicle is at a location identified in the tour guide application for the selected tour area, controls the display screen to display information associated with the identified location of the tour guide application and the current geographical location of the vehicle.
Abstract:
Methods and systems are provided for a vehicle. A determination is made as to whether the vehicle requires a service. A determination is also made as to whether the vehicle is proximate a location at which the service can be performed. A notification is provided that the vehicle requires the service and is proximate the location.