Abstract:
An application programming interface (API) is disclosed for interfacing a vehicle electronic component with a smartphone, wherein the vehicle electronic component and the smartphone each make use of a short range wireless transceiver for wirelessly communicating with the other, and wherein the smartphone includes an application running thereon. The API has an interconnect API disposed in the electronic component. The interconnect API also has a software library of command and function definitions that are able to be implemented by the API. A connect library is also used which resides within the smartphone and which is configured to communicate with the application running on the smartphone. The interconnect API and the connect library cooperatively operate as a translation mechanism to implement a plurality of functionalities when communicating with the application, according to the electronic device's capabilities.
Abstract:
Values may be tracked from wireless sensors of a vehicle indicative of distance between the mobile device and the sensors. When the values over time indicate approach and then departure of the device to a first side of the vehicle and consistent approach of the device to a second side of the vehicle, the device may be associated with a seating zone of an identified closest pair of the sensors. Wireless sensors may be proximate to entrances to a vehicle. The vehicle may track values from the sensors indicative of distance between a mobile device and the sensors; calculate pair values as sums of the values received from pairs of the sensors proximate vehicle entrances; and identify one of the entrances through which the mobile device passed according to the pair value with a minimum value closest to a distance between the pair of the sensors.
Abstract:
A vehicle system includes a processor programed to receive a first layer of navigation map data and a second layer of navigation control data from a wireless device via a transceiver. The first layer may be transmitted at a first rate and the second layer transmitted at a second rate lower than the first rate, or only in response to a user input at a user interface of the wireless device. The processor is further programed to combine the first and second layers for output at a display.
Abstract:
A device dock of a vehicle may receive a one-time key over a data connection between the device dock and a vehicle computing system (VCS), and send the one-time key over a location-identifying connection to a nomadic device placed within proximity to the dock, to cause the nomadic device to send the one-time key to the VCS to integrate with the VCS as a driver device. The VCS may receive, from a nomadic device in a device dock, via a data connection between the VCS and the nomadic device, a one-time key provided from the VCS to the device dock over a data connection between the VCS and the device dock, and responsive to receipt of the one-time key from the nomadic device, integrate the nomadic device with the VCS as a driver device.
Abstract:
A vehicle computing system includes a processor connected to a transceiver and programmed to prompt an occupant via a user interface to pair a device detected by the transceiver. The processor is further programmed to receive input at the user interface to associate the device with a pre-approval setting for enabling a vehicle start request when the device having the pre-approval setting and a vehicle key are detected by the processor.
Abstract:
A vehicle system may be connected to a mobile device over a data connection and an audio connection, and configured to, responsive to a vehicle volume change, request over the data connection that the mobile device provide an audio indication at device volume over the audio connection, and reproduce the audio indication by the vehicle system, at vehicle volume, to indicate a loudness for audio played back from the mobile device. The mobile device may be connected to the vehicle system over the data connection and the audio connection, and configured to receive the request over the data connection that the mobile device provide the audio indication over the audio connection, and provide the audio indication at device volume to allow the vehicle system to reproduce the audio indication at the overall volume of sound played back from the mobile device through the vehicle system.
Abstract:
A vehicle computing system includes a plurality of sensors, one or more lights, and at least one controller used to notify a driver of a detected object. The plurality of sensors may be configured to detect and measure a distance to the detected object. The at least one controller may be configured to select a color for display at the one or more lights based on the detected object being within a first predefined distance. The at least one controller may be further configured to adjust a brightness intensity for the one or more lights based on the selected color and the distance to the detected object.
Abstract:
A master media consumption device may stream media content to a plurality of slave media consumption devices for video playback, and may send playback status updates to the plurality of slave media consumption devices and the master media device to maintain synchronization of the audio and video playback. A device may identify as a master media device when connected to a computing platform of a vehicle, and as a media consumption device otherwise when the device is connected to the master media device. The device, when operating as the media consumption device, may display a video portion of an instance of media content; and when operating as the master media device, may provide an audio portion of the media content to the computing platform.
Abstract:
One or more controller may extract voice commands from retrieved web content, format the web content according to vehicle computing system (VCS) specific formatting information, provide the formatted web content for display by the VCS, and update the recognized voice commands of the VCS according to the extracted voice commands. A server may identify whether a received web request for web content is directed to a vehicle sub-domain for providing an in-vehicle-specific version of the content, identify whether the received web request is for presentation of web content via a VCS, and redirect the web request to the vehicle sub-domain when the request is not directed to the vehicle sub-domain and is for presentation via the VCS.
Abstract:
A system is disclosed for inserting selected content into a signal being broadcast by a broadcast station, and being received by a vehicle radio system. A vehicle radio system may be incorporated which has a processing system. A personal electronic device (PED) able to be carried by a user is also used. The PED may supply selected content to the processing system. The processing system may detect a first signal in the received broadcast signal that indicates a commercial break period of predetermined duration is to begin, and a second signal in the received broadcast signal that indicates that the commercial break period is to end. The processing system may obtain the selected content from the PED and insert the obtained, selected content into the broadcast signal for seamless playback through the vehicle radio system during the commercial break period.