Abstract:
Methods, systems, and devices enable recovery of words spoken while a communication device is on mute during a voice call. A processor of the communication device or a network server may buffer audio segment in memory when the mute function is turned on. If the mute function is turned off soon after the input audio segment begins, or the processor recognizes from the spoken words that the speaker does not intend to be on mute, the processor may transmit to the third party participant a playback of at least one portion of the buffer in conjunction with turning off the mute function. Playback of the buffered audio segment may be sped up so that the playback catches up to current speech of the speaker. Buffering and playback of an input audio segment may be accomplished at the speaker's communication device or in a server within the communication network.
Abstract:
Described herein are systems and methods employing embedded barcodes to convey supplemental information about an image, for example a motion picture. In some systems the barcodes may be subliminal because they are spliced, physically or digitally, into a movie frame shown too briefly to be consciously detectable to the human eye, but still detectable by camera sensors. Other described systems may display the barcodes in infrared or ultraviolet light, which is outside of the visible spectrum of light perceived by the human eye, but still detectable by camera sensors.
Abstract:
Method, computer program product, and apparatus for providing navigation guidance to vehicles are disclosed. The method may include receiving crowdsourcing data from a plurality of vehicles, determining information corresponding to a route of interest to at least one vehicle using the crowdsourcing data, and providing navigation guidance to the at least one vehicle using the information determined. The crowdsourcing data includes on board diagnostics data (OBD) correlated with time stamps and GPS locations of a vehicle, where the on board diagnostics data includes odometer information, speedometer information, fuel consumption information, steering information, and impact data.
Abstract:
Method, computer program product, and apparatus for providing navigation guidance to vehicles are disclosed. The method may include receiving crowdsourcing data from at least one vehicle, determining the parking information based on one or more locations visited by the at least one vehicle, after the at least one vehicle has reached a destination, and providing the parking information to the at least one vehicle. The crowdsourcing data includes on board diagnostics data (OBD) correlated with time stamps and GPS locations of the at least one vehicle, where the on board diagnostics data includes odometer information, speedometer information, fuel consumption information, steering information, and impact data.
Abstract:
Example methods, apparatuses, or articles of manufacture are disclosed herein that may be utilized, in whole or in part, to facilitate or support one or more operations or techniques for automatic or more dynamic handover of one or more positioning parameters from a navigation device, such as a personal navigation device (PND) co-located with a vehicle, for example, to a mobile communication device for use in or with a mobile communication device.
Abstract:
Systems, methods, apparatuses, and computer-readable media for are provided for providing a navigation route based on network availability. In one embodiment, a method includes receiving a request for a navigation route. The method may further include providing the navigation route, the navigation route taking into account accessibility information relating to accessibility of at least one wireless network at different geographic locations along the navigation route and device specific information relating to attributes of a mobile device. The accessibility information may include data collected by different mobile devices at different geographic locations. The accessibility information may also be stored at a centralized server.
Abstract:
An apparatus for testing a device (DUT) includes a peripheral controller configured to communicate with an application embedded in the DUT. The application is configured to run self-diagnostic tests. An audio interface is arranged to transmit audio codes between the apparatus and the DUT on the basis of the tests, wherein the peripheral controller is coupled to the audio interface, being configured to encode and decode the audio codes. A method of testing a DUT includes running a DUT embedded application configured to run self-diagnostic tests. Running the application comprises transmitting encoded audio command signals via an audio interface from a testing apparatus to a microphone configured with the DUT to initiate self diagnostic tests, receiving audio response signals from the DUT generated on the basis of the tests via an audio interface configured with the testing apparatus, and decoding the received audio response signals by a peripheral controller.
Abstract:
Techniques are provided which may be implemented using various methods and/or apparatuses in a mobile device to provide indications of power use associated with route options for navigation on a mobile device. Navigation route options may be displayed with associated indications of power usage information, enabling power usage to be utilized in determining route selection.
Abstract:
Method, computer program product, and apparatus for providing navigation guidance to vehicles are disclosed. The method may include receiving crowdsourcing data from at least one vehicle, determining the parking information based on one or more locations visited by the at least one vehicle, after the at least one vehicle has reached a destination, and providing the parking information to the at least one vehicle. The crowdsourcing data includes on board diagnostics data (OBD) correlated with time stamps and GPS locations of the at least one vehicle, where the on board diagnostics data includes odometer information, speedometer information, fuel consumption information, steering information, and impact data.
Abstract:
Example methods, apparatuses, or articles of manufacture are disclosed herein that may be utilized, in whole or in part, to facilitate or support one or more operations or techniques for automatic or more dynamic handover of one or more positioning parameters from a navigation device, such as a personal navigation device (PND) co-located with a vehicle, for example, to a mobile communication device for use in or with a mobile communication device.