Abstract:
Aspects of the disclosure relate to an emitter for active depth sensing shared by multiple apertures. An example method for active depth sensing by a device including a first aperture, a second aperture, a first emitter, and an optical element includes identifying whether the optical element is to be in a first optical element (OE) mode or a second OE mode, and controlling the optical element based on the identified OE mode. The optical element directs light from the first emitter towards the first aperture in the first OE mode. Light is directed from the first emitter towards the second aperture in the second OE mode.
Abstract:
Systems, methods, and non-transitory media are provided for adjusting camera settings based on event data. An example method can include obtaining, via an image capture device of a mobile device, an image depicting at least a portion of an environment; determining a match between one or more visual features extracted from the image and one or more visual features associated with a keyframe; and based on the match, adjusting one or more settings of the image capture device.
Abstract:
A method for operating a mobile device includes generating a user interface at a processor. The user interface includes one or more virtual objects. The method also includes changing a configuration of the one or more virtual objects. The method further includes monitoring a mannerism of a user of the mobile device. The mannerism is affected by a change in configuration of the one or more virtual objects. The method also includes performing a function based on the mannerism.
Abstract:
A method for operating a mobile device includes generating a user interface at a processor. The user interface includes one or more virtual objects. The method also includes changing a configuration of the one or more virtual objects. The method further includes monitoring a mannerism of a user of the mobile device. The mannerism is affected by a change in configuration of the one or more virtual objects. The method also includes performing a function based on the mannerism.
Abstract:
Disclosed is a method and apparatus for authenticating a user on a mobile device. The method may include initiating authentication of the user for access to the mobile device, where access to the mobile device is granted upon successful authentication of the user by the mobile device. The method may also include performing face recognition analysis on an image of a face of the user to determine an identity of the user. Furthermore, the method may also include determining whether a first pulse information and a second pulse information associated with the user indicate a pulse match. The method may also include authenticating the user for access to the mobile device when a pulse match is determined and the determined identity of the user has permission to access the mobile device.
Abstract:
Apparatus and methods of using content information for encoding multimedia data are described. A method of processing multimedia data includes obtaining content information of multimedia data, and encoding the multimedia data so as to align a data boundary with a frame boundary in a time domain, wherein said encoding is based on the content information. In another aspect, a method of processing multimedia data includes obtaining a content classification of the multimedia data, and encoding blocks in the multimedia data as intra-coded blocks or inter-coded blocks based on the content classification to increase the error resilience of the encoded multimedia data. Apparatus that can process multimedia data described in these methods are also disclosed.
Abstract:
A method and apparatus of processing multimedia data that includes a first section received in error are disclosed. Error distribution information corresponding to the first section may be obtained. One of a plurality of error recovery schemes may be selected based on the error distribution information for the first section. The selection may be based at least on whether a channel switch is detected. The first section may be processed based on the selected error recovery scheme.
Abstract:
A method for generating a user interface at a mobile device includes receiving an indication of a user configurable pattern at a processor. The user configurable pattern indicates locations on a user interface that are spatially separated. The locations are configured to receive user input to enable access to data at the mobile device. The method also includes generating the user interface based on the user configurable pattern.
Abstract:
Systems, methods, and non-transitory media are provided for a vehicle and mobile device interface for vehicle occupant assistance. An example method can include determining, based on one or more images of an interior portion of a vehicle, a position of a mobile device relative to a coordinate system of the vehicle; receiving, from the vehicle, data associated with one or more sensors of the vehicle; and displaying, using a display device of the mobile device, virtual content based on the data associated with the one or more sensors and the position of the mobile device relative to the coordinate system of the vehicle.
Abstract:
Disclosed is a method and apparatus for authenticating a user on a mobile device. The method may include initiating authentication of the user for access to the mobile device, where access to the mobile device is granted upon successful authentication of the user by the mobile device. The method may also include performing face recognition analysis on an image of a face of the user to determine an identity of the user. Furthermore, the method may also include determining whether a first pulse information and a second pulse information associated with the user indicate a pulse match. The method may also include authenticating the user for access to the mobile device when a pulse match is determined and the determined identity of the user has permission to access the mobile device.