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 and techniques are provided for conditioning virtual representatives. For example, a method can include obtaining, by a conditioning engine, a baseline model for a virtual representative; obtaining, by the conditioning engine, one or more conditioning inputs configured to condition an action in one or more multi-user experiences of the virtual representative; generating, based on the baseline model and the one or more conditioning inputs configured to condition an action in one or more multi-user experiences of the virtual representative, a conditioned model for the virtual representative; and outputting the conditioned model for the virtual representative.
Abstract:
Systems and techniques are provided for adapting digital content. For example, a process can include obtaining a digital content comprising a default configuration for outputting the digital content to a device; outputting, by the device, the digital content based on the default configuration for outputting the digital content. The process can include obtaining, from a monitoring engine, content interaction information associated with outputting, by the device, the digital content based on the default configuration for outputting the digital content. The monitoring engine is configured to monitor one or more interactions between one or more users of the device and the digital content. The process can include generating, based on the content interaction information, a content adaptation for the digital content. The process can include outputting, by the device, the content adaptation for the digital content.
Abstract:
Systems and techniques are described herein for rollout photography for mobile devices. For example, a computing device (e.g., a mobile device) can obtain, from a camera, a plurality of image frames of an object while at least one of the apparatus or the object is moving relative to each other. The computing device can determine a plurality of image segments from the plurality of image frames of the object. The plurality of image segments include a respective image segment from each image frame of the plurality of image frames. The computing device can combine the plurality of image segments to generate a single two-dimensional (2D) image of a surface of the object.
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:
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:
Aspects of the disclosure relate to an apparatus including multiple image sensors sharing one or more optical paths for imaging. An example method includes identifying whether a device including a first aperture, a first image sensor, a second image sensor, and an optical element is to be in a first device mode or a second device mode. The method also includes controlling the optical element based on the identified device mode. The optical element directs light from the first aperture to the first image sensor in a first optical element mode. Light from the first aperture is directed to the second image sensor when the optical element is in the second optical element mode.
Abstract:
Methods and apparatus to process multimedia data enabling efficient partial decoding of transform coded data are described. A decoder device receives transform coefficients, where the transform coefficients are associated with multimedia data. The decoder device determines a set of multimedia samples to be reconstructed. In one aspect, the set of samples to be reconstructed is a subset of a matrix of transformed multimedia samples. The decoder device determines a set of transform coefficients to be used to reconstruct the multimedia samples. In one aspect, the transform coefficients are used to scale partial basis images associated with the encoding method used to generate the transform coefficients, resulting in reconstructed multimedia samples.