Abstract:
A vehicle includes a multi-touch screen and a controller. A method for providing information related to a vehicle function includes visually displaying on the multi-touch screen a representation of a portion of the vehicle including a plurality of operating sections including a plurality of vehicle functions and a HELP icon. One of the vehicle functions is selected in response to a user action that includes a dragging motion on the multi-touch screen between the HELP icon and the selected vehicle function. Information related to the selected vehicle function is accessed. A preferred mode is employed to communicate the information related to the selected vehicle function to the user.
Abstract:
A vehicle automates a driver action by controlling vehicle systems according to a rule. The rule includes a trigger event and an automated action. Rules are created or added for use by a vehicle using applications including user-defined rule applications, automatic rule applications, and network applications.
Abstract:
A method and system are disclosed for adaptive driver guidance for navigation and location-based services based on user behavior patterns. A driver-facing camera and a gaze tracking system determine the location of the driver's visual focus while an outside-facing camera detects and interprets external driving situations, a microphone and a speech analyzer identify driver vocalizations, and driver-proximate sensors and the driver-facing camera detect driver emotions. The driver's visual focus, the driver vocalizations and the driver emotions, along with vehicle system parameters from a data bus, are used to evaluate driver satisfaction with navigation guidance and determine driver behavior patterns. An adaptive navigation guidance engine modifies navigation guidance content and timing based on the driver satisfaction and behavior patterns. Adaptation of guidance for location-based services is also provided.
Abstract:
Methods and systems are provided for detecting an attention of an occupant of a vehicle. In one embodiment, a method includes calculating, by a processor, a first gaze vector in a three-dimensional space based on a first vehicle location, a first vehicle orientation, and a first gaze direction; calculating, by the processor, a second gaze vector in the three-dimensional space based on a second vehicle location, a second vehicle orientation, and a second gaze direction; and determining the attention of the occupant based on the first gaze vector and the second gaze vector.
Abstract:
A vehicle automates a driver action by controlling vehicle systems according to a rule. The rule includes a trigger event and an automated action. Rules are created or added for use by a vehicle using applications including user-defined rule applications, automatic rule applications, and network applications.
Abstract:
A social media system for a vehicle and a method of operating the social media system are provided. The social media system, for example, may include, but is not limited to a camera, an interface, a memory configured to store one or more safety settings, and a processor communicatively coupled to the camera, the interface and the memory, the processor being configured to receive, via the interface, a command request to utilize the social media system, determine, based upon the safety settings stored in the memory, when the command request may be completed, and executing the command request when the processor determines that command request may be completed.