Abstract:
The disclosed method for processing a broadcast signal for 3D (3-Dimensional) broadcast service comprises encoding 2D (2-Dimentional) video stream including a 2D video frame, encoding depth information including depth of a 3D image relative to a plane of a display, encoding signaling information for signaling the encoded 2D video stream and the depth information, wherein the signaling information includes a 3D service location descriptor including codec type information specifying encoding type of the encoded depth information, generating the broadcast signal including the encoded 2D video stream, depth information and signaling information, and transmitting the generated broadcast signal.
Abstract:
A broadcast transmitter, a broadcast receiver, and a 3D video data processing method are disclosed. A 3D video data processing method includes processing, by a video formatter, 3D video data, encoding, by an encoder, 3D video data, generating, by a system information processor, system information having 3D video composition information including information about the processing and encoding of 3D video data, multiplexing, by a multiplexer, the system information and the 3D video data, and transmitting, by a transmitter, a broadcast signal. In a 3D video data processing method, a receiver receives a broadcast signal including 3D video data and system information, a system information processor obtains 3D video composition information by parsing the system information, a decoder decodes the 3D video data according to the 3D video composition information, and an output formatter formats and outputs the decoded 3D video data according to the 3D video composition information.
Abstract:
A compressed light field imaging system is described. The light field 3D data is analyzed to determine optimal subset of light field samples to be (acquired) rendered, while the remaining samples are generated using multi-reference depth-image based rendering. The light field is encoded and transmitted to the display. The 3D display directly reconstructs the light field and avoids data expansion that usually occurs in conventional imaging systems. The present invention enables the realization of full parallax 3D compressed imaging system that achieves high compression performance while minimizing memory and computational requirements.
Abstract:
A system and method for conducting 3D image analysis, generating a lossless stereoscopic master file, uploading the lossless stereoscopic master file to editing software, wherein the editing software generates a disparity map, analyzes a disparity map, analyzes cuts, and creates cut and disparity meta-information, and then scaling media, storing media and streaming the media for playback on a 3D capable viewer is provided.
Abstract:
A video image capture device for providing a video with perceived depth comprising: an image sensor for capturing video frames; an optical system for imaging a scene onto the image sensor from a single perspective; a data storage system for storing a sequence of video images captured by the image sensor; a position sensing device for sensing a relative position of the image capture device; a means for storing the sensed relative position of the image capture device in association with stored sequences of video images; a data processor; a memory system storing instructions configured to cause the data processor to provide a video with perceived depth. The video with perceived depth is provided by: selecting stereo pairs of video images responsive to the stored relative position of the image capture device.
Abstract:
Disclosed are a reception system and a data processing method which are able to receive and process a 3D image. The disclosed reception system includes an image reception unit and a display unit. The image reception unit receives a 3D image and system information that includes additional information for the 3D image, then generates 3D signaling information based on the additional information, and then transmits the 3D signaling information together with the 3D image through a digital interface. The display unit receives the 3D image and the 3D signaling information through the digital interface, then formats the 3D image based on the received 3D signaling information, and then displays the formatted 3D image.
Abstract:
The disclosed embodiments relate to determining transmit formats and receive formats for a 3D video communication service. Sets of available 3D video communication transmit formats are received. Each set is associated with a client device. Sets of available 3D video communication receive formats are received. Each set is associated with one of the client devices. One format for transmission of 3D video communication from the at least one client device to the other client devices is determined for at least one of the client devices. The one format is a member of both the set of available 3D video communication transmit formats associated with the at least one client device and the received available 3D video communication receive formats associated with other client devices.
Abstract:
The present invention relates to a broadcast signal processing method and device for 3D broadcasting service. The broadcast signal processing method according to an embodiment of the present invention includes: encoding 3D video broadcast data that includes left image broadcast data having a left image and right image broadcast data having a right image to provide 3D effects; encoding signaling information for signaling the encoded 3D video broadcast data; generating a broadcast signal including the encoded 3D video broadcast data and the encoded signaling information; and transmitting the generated broadcast signal.
Abstract:
A method of decoding closed caption disparity data, involves a TV receiver receiving closed caption disparity data for a 3D display encoded as a sequence of frame interval/slope change pairs, with the frame interval representing a designated number of frames over which each linear function representing disparity is to be applied paired with a value indicating a change in slope from the slope of a preceding segment. A first segment in the sequence presumes a predetermined slope as a reference. A sequence of caption data packets specifies a closed caption display window containing closed caption text. The disparity value is used in each frame to determine a horizontal offset of left and right eye views of the CC display that establishes the closed caption display window's perceived z-axis position. This abstract is not to be considered limiting, since other embodiments may deviate from the features described in this abstract.
Abstract:
A system and method described herein provide stereoscopic video using standard DVD video data combined with enhancement data. In various embodiments, the enhancement data may be stored on the same DVD as the standard video, or provided via downloading and/or streaming to a stereoscopic DVD player. When stored on the DVD, the enhancement data is provided in various forms, including MPEG (-1 or -2) program stream level; or the MPEG elementary stream level. In one embodiment, the enhancement data consists of a difference signal between left- and right-eye images taken on a pixel-by-pixel basis. The present invention also pertains to an optical disc player with a standard digital port, such as a USB port, coupled to an external storage, such as a thumb drive, coupled to a standard digital port such as a USB port. The external storage may also be used to provide content, commands or applications that enable the player to present certain additional content, or to perform certain additional or enhanced functions. The additional content may be obtained using a Universal Resource Identifier.