Abstract:
A mobile device that incorporates the subject disclosure may perform, for example, operations including requesting transport characteristics of a network coupled to a server and to the device according to a trajectory of the device. Data packets are transported to the mobile device according to a dynamic adaptive streaming over hypertext transfer protocol. The operations include obtaining the current transport characteristics of the network and predicting a future transport characteristic of the network, according to the trajectory of the device. A time is scheduled for sending a request to the server for transmission over the network of a data packet. The time can be scheduled according to the current and future transport characteristics of the network, to avoid degradation in quality of media content presented by the device. The data packet received responsive to sending the request is buffered for a future presentation of the media content. Other embodiments are disclosed.
Abstract:
A mobile device that incorporates the subject disclosure may perform, for example, obtaining performance characteristics for network segments of a network where the network segments are selected from a group of network segments of the network based on a trajectory of the mobile device. The mobile device can monitor power state transitions of the mobile device, and can predict a future power state of the mobile device based on the monitoring of the power state transitions. The mobile device can determine a target time for sending a request for transmission of a data packet over the network where the target time is determined based on the performance characteristics for the network segments and based on the future power state of the mobile device. The mobile device can schedule a time for sending the request for transmission according to the target time. Other embodiments are disclosed.
Abstract:
A system that incorporates teachings of the present disclosure may obtain images of an object captured at different viewing angles of a first portion of a viewing perspective of the object, and generate additional images for a second portion of the viewing perspective based on interpolation, extrapolation or both of the captured images. Holographic content for the object based on the captured images and the additional images is generated, in accordance with load balancing. The holographic content and second video content of a second user at a second location are provided to the first local device for presentation at a first display device that simulates the second user and the object being present at the first location and simulates interaction of a first user at the first location with the object based on movement of the first user with respect to the holographic content. Other embodiments are disclosed.
Abstract:
A method and apparatus for providing an opportunistic crowd based service platform is disclosed. A mobile sensor device is identified based on a current location and/or other qualities, such as intrinsic properties, previous sensor data, or demographic data of an associated user of the mobile sensor device. Data is collected from the mobile sensor device. The data collected from the mobile sensor device is aggregated with data collected from other sensor devices, and content generated based on the aggregated data is delivered to a user device.
Abstract:
A method and apparatus for providing an opportunistic crowd based service platform is disclosed. A mobile sensor device is identified based on a current location and/or other qualities, such as intrinsic properties, previous sensor data, or demographic data of an associated user of the mobile sensor device. Data is collected from the mobile sensor device. The data collected from the mobile sensor device is aggregated with data collected from other sensor devices, and content generated based on the aggregated data is delivered to a user device.
Abstract:
A method, apparatus, and computer readable medium for identifying a person in an image includes an image analyzer. The image analyzer determines the content of an image such as a person, location, and object shown in the image. A person in the image may be identified based on the content and event data stored in a database. Event data includes information concerning events and related people, locations, and objects determined from other images and information. Identification metadata is generated and linked to each analyzed image and comprises information determined during image analysis. Tags for images are generated based on identification metadata. The event database can be queried to identify particular people, locations, objects, and events depending on a user's request.
Abstract:
A method or apparatus that incorporates teachings of the present disclosure may include, for example, a method for retrieving a plurality of sensory information from an environment of a device. A digital representation of the environment of the device is identified corresponding to the plurality of sensory information from the environment of the device. A media presentation element of the device associated with media content of the device is identified. A user interface of the media presentation element is adapted to modify a presentation of the media content by the media presentation element of the device according to the digital representation of the environment of the device. Other embodiments are disclosed.
Abstract:
A system that incorporates teachings of the present disclosure may capture images using a camera system at a location associated with a user, transmit video content representative of the images over a network for presentation by another media processor at another location, receive at a media processor media content and second video content representative of second images that are associated with the second user, and present at a display device of the location the media content and the second video content in a telepresence configuration that simulates a presence of the other user at the location, where at least one of the media content and the video content is presented as three dimensional content. Other embodiments are disclosed.
Abstract:
A portable communication device has a touch screen display that receives tactile input and a microphone that receives audio input. The portable communication device initiates a query for media based at least in part on tactile input and audio input. The touch screen display is a multi-touch screen. The portable communication device sends an initiated query and receives a text response indicative of a speech to text conversion of the query. The portable communication device then displays video in response to tactile input and audio input.
Abstract:
A method for monitoring a monitored display monitors data to be output from a monitored display. The monitored data is analyzed to generate one or more content identifiers. The content identifiers are compared to a set of rules to determine if the monitored data should be blocked from being output or if an alert should be transmitted to a supervisor device. One or more supervisor devices may be used to respond to alerts and may also be used to control the output of the monitored display.