Abstract:
Methods and systems are provided for processing speech for an autonomous or semi-autonomous vehicle. In one embodiment, a method includes receiving, by a processor, context data generated by the vehicle; determining, by a processor, a dialog delivery method based on the context data; and selectively generating, by a processor, a dialog prompt to the user via at least one output device based on the dialog delivery method.
Abstract:
A dynamic wireless multi-channel switch including a networking device providing access to communicate messages on at least two frequency bands. A wireless access manager module determines a utilization of each frequency band based on the communicated messages. The wireless access manager module dynamically adjusts a time slot ratio of each frequency band as a function of the utilization of the communicated messages by the networking device.
Abstract:
Methods and systems are provided for processing speech for a vehicle having at least one autonomous vehicle system. In one embodiment, a method includes: receiving, by a processor, context data generated by an autonomous vehicle system; receiving, by a processor, a speech utterance from a user interacting with the vehicle; processing, by a processor, the speech utterance based on the context data; and selectively communicating, by a processor, at least one of a dialog prompt to the user and a control action to the autonomous vehicle system based on the context data.
Abstract:
A system and method for supporting mobile device connectivity with a vehicle. A mobile device is provided that includes at least one connectivity option for connecting to a communications channel of the vehicle. A flexible connectivity module that includes a controller is programmed to determine if there is at least one matching communication channel between the mobile device and the vehicle such that the mobile device and the vehicle may be in communication with each other. The controller selects the optimal connectivity option if there is more than one of the matching communication channels available and monitors the selected connectivity option and changes or modifies the selected connectivity option if a predetermined interference threshold is achieved.
Abstract:
A mobile device screen projection system for an in-vehicle display is provided. The system receives mobile device content from a mobile device, receives context data from a plurality of information sources associated with at least one of the vehicle and the mobile device, determines an integrated context based on the context data, and selectively renders the mobile device content on the in-vehicle display based on the integrated context.
Abstract:
Methods and systems for compensating for delay or jitter are provided. The methods, for example, may include, but are not limited to receiving, by a processor, one or more data streams from one or more electronic devices, transmitting, by the processor, the one or more data streams to one or more displays, determining, by the processor, delay and jitter in the one or more data streams transmitted by the processor, and requesting, by the processor, at least one of the one or more electronic devices to adjust a respective data stream via a communication system.