Abstract:
A system and method for offline content delivery through an active screen display is provided. Data for display and content to be displayed at a later time are encoded as a display signal for delivery. An active screen display is associated with a computer and coupled to a processor over a physical display interface connection. The display signal is received and decoded to distinguish the data for display from the content to be displayed at a later time. The content to be displayed at a later time is displayed via the active screen display when the computer is one of turned off and inactive.
Abstract:
A system, method, and computer program product for automatically adjusting the output of presentation content based upon vehicle conditions. The method determines whether one of a plurality of vehicle conditions exists, such as conditions related to vehicle speed, rate of change in vehicle speed, rate of change in vehicle direction, vehicle emergencies, cellular phone or headphone activation, radar detector activation, noise level decibels above a certain value, etc. The method determines an output format based on the determined vehicle conditions. The method outputs at least a portion of the presentation content based on the determined output format. The determined output format includes display format information, such as text font or icon size information or map detail. The presentation content can also include audio content.
Abstract:
A system and method for processing multi-modal communications during a call session are provided. A call is received from a caller and assigned to an agent. A caller identification is assigned to the call. Voice communication from the call is processed and displayed. One or more text messages from the caller are received during the call. The caller identification is assigned to each of the text messages. The text messages are matched to the call using the caller identification and are displayed to the agent for review during the call.
Abstract:
A phone embedded within a vehicle for automatically using a service plan of a proximate personal mobile phone. The embedded phone includes an internal communication component that detects the presence of the personal mobile phone, and receives a mobile subscriber identification number from the detected phone. The embedded phone also includes an external communication component that sends the received mobile subscriber identification number to a wireless network authority, and receives an authentication request to the personal mobile phone via the embedded phone. The internal communication component sends the authentication request to the personal mobile phone. The personal mobile phone generates an authentication signal, and the external communication component sends the authentication signal to the wireless network authority.
Abstract:
A system and method for distributed speech recognition is provided. Audio data is obtained from a caller participating in a call with an agent. A main recognizer receives a main grammar template and the audio data. A plurality of secondary recognizers each receive the audio data and a reference that identifies a secondary grammar, which is a non-overlapping section of the main grammar template. Speech recognition is performed on each of the secondary recognizers and speech recognition results are identified by applying the secondary grammar to the audio data. An n number of most likely speech recognition results are selected. The main recognizer constructs a new grammar based on the main grammar template using the speech recognition results from each of the secondary recognizers as a new vocabulary. Further speech recognition results are identified by applying the new grammar to the audio data.
Abstract:
A comprehensive system and method for telematics including the following features individually or in sub-combinations: vehicle user interfaces, telecommunications, speech recognition, digital commerce and vehicle parking, digital signal processing, wireless transmission of digitized voice input, navigational assistance for motorists, data communication to vehicles, mobile client-server communication, extending coverage and bandwidth of wireless communication services, and noise reduction.
Abstract:
A vehicle navigation system and method. The system includes a unit located in a vehicle and coupled to a first network, a traffic information center coupled to a second network, and a server coupled to the first and second networks. A trip plan is generated according to navigation information, vehicle coordinates and trip request information received from the unit, and road information received from the traffic information center. The trip plan is sent to the unit for presentation. The trip plan includes trip overview information and voice prompts associated with one or more landmarks. A trip plan may be a tourist trip plan.
Abstract:
An integrated circuit card includes a storage device to store one or more code files and one or more data files, and control logic. The control logic implements an ICC runtime environment that executes an applet in response to a command identifying both a code file and a data file received from a host system.
Abstract:
Disclosed is a digital apparatus, such as a digital camera, which generates a digital representation of an image. The digital apparatus includes an image sensor having an array of pixels. An analog-to-digital converter converts electrical signals from the array of pixels into digital data representative of the image. Information indicative of locations of defective pixels in the pixel array is stored in a pixel defect memory. Compensation circuitry compensates the digital data representative of the image using the information indicative of the locations of the defective pixels. Also disclosed are methods of manufacturing a digital apparatus having compensation for defective pixels.
Abstract:
A system and method for providing services to users in vehicles based on radio broadcasts received by a vehicle's radio receiver. The system includes a computer-based vehicle unit located in a vehicle, a gateway configured to wirelessly send and receive information to and from the vehicle unit, and a computer-based server in communication with the gateway over a network. The vehicle unit includes a user interface component that presents the received content and radio broadcast and records user requests. The server processes the requests and sends confirmation messages back to the unit via the gateway when a request is completed or other information needs to be sent to the unit. The vehicle unit wirelessly receives a radio broadcast from a radio station, transmits user requests and vehicle information to the server via the gateway, and receives content back from the server.