H04N21/2365

Random access at resync points of dash segments

A device for retrieving media includes a memory configured to store media data of a media presentation; and one or more processors implemented in circuitry and configured to: retrieve a manifest file for a media presentation indicating that container parsing of media data of a bitstream can be started at a resync point of a segment of a representation of the media presentation, the resync point being at a position other than a start of the segment and representing a point at which the container parsing of the media data of the bitstream can be started; use the manifest file to form a request to retrieve the media data of the representation starting at the resync point; send the request to initiate retrieval of the media data of the media presentation starting at the resync point; and present the retrieved media data.

Random access at resync points of dash segments

A device for retrieving media includes a memory configured to store media data of a media presentation; and one or more processors implemented in circuitry and configured to: retrieve a manifest file for a media presentation indicating that container parsing of media data of a bitstream can be started at a resync point of a segment of a representation of the media presentation, the resync point being at a position other than a start of the segment and representing a point at which the container parsing of the media data of the bitstream can be started; use the manifest file to form a request to retrieve the media data of the representation starting at the resync point; send the request to initiate retrieval of the media data of the media presentation starting at the resync point; and present the retrieved media data.

System and method of data transfer in-band in video via optically encoded images
11557015 · 2023-01-17 ·

Data are encoded into one or more optically encoded images. The optically encoded images are then inserted as image data into a video sequence—i.e., in video frames. Data are transmitted in-band within the video, via any conceivable video distribution channel or format. The video may be trans-coded as required—because the data are optically encoded, any video processing that even crudely preserves the frame images will preserve the optically encoded data. This scheme of in-band data transfer in video is very robust. A video receiving apparatus receives the video, inspects the image data from video frames in memory, detects optically encoded images in the image data, and decodes the optically encoded images to recover the data. The frames carrying optically encoded images are typically discarded and not rendered to a display. The data from a plurality of optically encoded images may be concatenated, and further processed.

METHOD AND APPARATUS FOR IMPLEMENTING MULTI-PERSON VIDEO LIVE-STREAMING SERVICE, AND COMPUTER DEVICE
20230011255 · 2023-01-12 ·

The present application discloses techniques of implementing a multi-person video live streaming service. The techniques comprise obtaining a first video and a second video of a live streamer, and obtaining a third video of any other live streaming member than the live streamer in a live streaming group; stitching the first video, the second video, and the third video of the any other live streaming member, for obtaining a multi-person live video stream; and sending the multi-person live video stream to respective live streaming clients associated with members in the live streaming group for the members to watch. The present application can increase the modes of interaction of live streaming members, thereby improving the user experience.

METHOD AND APPARATUS FOR IMPLEMENTING MULTI-PERSON VIDEO LIVE-STREAMING SERVICE, AND COMPUTER DEVICE
20230011255 · 2023-01-12 ·

The present application discloses techniques of implementing a multi-person video live streaming service. The techniques comprise obtaining a first video and a second video of a live streamer, and obtaining a third video of any other live streaming member than the live streamer in a live streaming group; stitching the first video, the second video, and the third video of the any other live streaming member, for obtaining a multi-person live video stream; and sending the multi-person live video stream to respective live streaming clients associated with members in the live streaming group for the members to watch. The present application can increase the modes of interaction of live streaming members, thereby improving the user experience.

CODING AND DECODING OF INTERLEAVED IMAGE DATA

Sampled data is packaged in checkerboard format for encoding and decoding. The sampled data may be quincunx sampled multi-image video data (e.g., 3D video or a multi-program stream), and the data may also be divided into sub-images of each image which are then multiplexed, or interleaved, in frames of a video stream to be encoded and then decoded using a standardized video encoder. A system for viewing may utilize a standard video decoder and a formatting device that de-interleaves the decoded sub-images of each frame reformats the images for a display device. A 3D video may be encoded using a most advantageous interleaving format such that a preferred quality and compression ratio is reached. In one embodiment, the invention includes a display device that accepts data in multiple formats.

REPRESENTING VOLUMETRIC VIDEO IN SALIENCY VIDEO STREAMS

Saliency regions are identified in a global scene depicted by volumetric video. Saliency video streams that track the saliency regions are generated. Each saliency video stream tracks a respective saliency region. A saliency stream based representation of the volumetric video is generated to include the saliency video streams. The saliency stream based representation of the volumetric video is transmitted to a video streaming client.

Method for encoding of a video stream

A temporal sequence of pictures is generated in a method for encoding of a first video stream. To do so, a synchronization signal can be used, which can be derived from a second video stream independently of the first video stream. Alternatively, the encoding of a second video stream independent of the first video stream can be based on the same principle as for the encoding of the first video stream.

Method for encoding of a video stream

A temporal sequence of pictures is generated in a method for encoding of a first video stream. To do so, a synchronization signal can be used, which can be derived from a second video stream independently of the first video stream. Alternatively, the encoding of a second video stream independent of the first video stream can be based on the same principle as for the encoding of the first video stream.

Point cloud data transmission device, point cloud data transmission method, point cloud data reception device, and point cloud data reception method
11544877 · 2023-01-03 · ·

Disclosed herein is a point cloud data transmission method. The transmission method may include encoding the point cloud data, encapsulating the point cloud data, and transmitting point cloud data. Disclosed herein is a point cloud data reception device. The reception device may include a receiver configured to receive the point cloud data, a decapsulator configured to decapsulate the point cloud data, and a decoder configured to decode the point cloud data.