Abstract:
Systems and methods for efficiently distributing digital cinema files from a server to a theater are disclosed. The systems and methods may comply with DCI requirements. A server updates an original composition playlist, updates a track file associated with the updated composition playlist, and distributes the updated composition playlist and updated track file to one or more theaters over a communications network. The theater is configured to store the updated track file at a storage containing copies of all track files associated with the updated composition playlist and update the theater's original composition playlist to the updated composition playlist. The server may have a database configured to track the composition playlists and associated track files present in each theater in the system.
Abstract:
Techniques described herein are directed to simulating lighting conditions of a real-world location in advance of beginning video production at the location. As described herein, captured data (e.g., captured images, captured video, and/or scanned three-dimensional data) of a candidate outdoor location may be used to generate a three dimensional model of the outdoor location. Thereafter, a simulation software application may be used to provide a graphical user interface for rendering the three dimensional model of the location under a variety of different lighting conditions. In particular implementations, the simulation software application may be used to render the location under a variety of different light conditions corresponding to different times of day.
Abstract:
The present disclosure provides for systems and methods for predictive delivery of high bit-rate content. The disclosed systems and methods provide an adaptive-bit-rate streaming (ABS) system with more robust information, thereby allowing more intelligent pre-caching of the media content. By providing greater information to the ABS system, the disclosed systems are able to foresee higher bit-rate segments that require greater attention, allowing the system to use such information to improve the playback experience.
Abstract:
Systems and methods for efficiently distributing digital cinema files from a server to a theater are disclosed. The systems and methods may comply with DCI requirements. A server updates an original composition playlist, updates a track file associated with the updated composition playlist, and distributes the updated composition playlist and updated track file to one or more theaters over a communications network. The theater is configured to store the updated track file at a storage containing copies of all track files associated with the updated composition playlist and update the theater's original composition playlist to the updated composition playlist. The server may have a database configured to track the composition playlists and associated track files present in each theater in the system.
Abstract:
A system includes an augmented reality (AR) device having a first display, processing hardware, and a memory storing software code. The processing hardware is configured to execute the software code to monitor media content including a sequence of moving images displayed on a second display separate from the AR device and controlled by a media player device, detect, based on monitoring the media content, an image in the sequence of moving images for enhancement by one or more AR effects. The processing hardware further executes the software code to render the one or more AR effects on the first display, and transmit, contemporaneously with rendering the one or more AR effects on the first display, a signal configured to pause or loop the playing of the media content on the second display.
Abstract:
A system includes an augmented reality (AR) device having a first display, processing hardware, and a memory storing software code. The processing hardware is configured to execute the software code to monitor media content including a sequence of moving images displayed on a second display separate from the AR device and controlled by a media player device, detect, based on monitoring the media content, an image in the sequence of moving images for enhancement by one or more AR effects. The processing hardware further executes the software code to render the one or more AR effects on the first display, and transmit, contemporaneously with rendering the one or more AR effects on the first display, a signal configured to pause or loop the playing of the media content on the second display.
Abstract:
Systems and methods are described for placing large objects and objects separated by large distances in an AR environment. An AR headset system may place and generate digital objects using relative geographical coordinates (e.g., latitude, longitude, and altitude) between the user's current position and the object being placed. In one implementation, a digital object's geographical coordinates may be calculated by determining a user's geographical coordinates, using a distance determination device to measure a distance to a boundary in the user's real-world environment within an AR headset's field of view, and calculating an orientation of the AR headset relative to the user's position. In another implementation, a digital object's geographical coordinates may be calculated by determining the user's geographical coordinates, calculating an orientation of the AR headset relative to the user's position, and receiving input at a user input device specifying at what distance to place and generate a digital object.
Abstract:
A first version and a second version of audio visual content are provided via a disc, a web site or a mobile device application to consumers. The second version has audiovisual content removed from the first version that is not appropriate for a type of viewer, such as children. In addition, a menu is provided that allows a user to select the first version or the second version to play on a device. In addition to or instead of the second version, the menu may allow the user to customize the first version for an intended audience.
Abstract:
The present disclosure provides for systems and methods for predictive delivery of high bit-rate content. The disclosed systems and methods provide an adaptive-bit-rate streaming (ABS) system with more robust information, thereby allowing more intelligent pre-caching of the media content. By providing greater information to the ABS system, the disclosed systems are able to foresee higher bit-rate segments that require greater attention, allowing the system to use such information to improve the playback experience.