SMPTE ST 2068-2013 Stereoscopic 3D Frame Compatible Packing and Signaling for HDTV.pdf
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1、 Copyright 2013 by THE SOCIETY OF MOTION PICTURE AND TELEVISION ENGINEERS 3 Barker Avenue, White Plains, NY 10601 (914) 761-1100 Approved July 29, 2013 Table of Contents Page Foreword . 2 Intellectual Property 2 Introduction 2 1 Scope . 4 2 Conformance Notation . 4 3 Normative References . 5 4 Defin
2、ition of Terms . 5 5 3DFC Ancillary Data Packet Specification and Carriage 5 Annex A Bibliography (Informative) . 13 Annex B 3D Frame Compatible Packing Methods Graphical Representation (Informative) 14 Page 1 of 15 pages SMPTE ST 2068:2013 SMPTE STANDARD Stereoscopic 3D Frame Compatible Packing and
3、 Signaling for HDTV SMPTE ST 2068:2013 Page 2 of 15 pages Foreword SMPTE (the Society of Motion Picture and Television Engineers) is an internationally-recognized standards developing organization. Headquartered and incorporated in the United States of America, SMPTE has members in over 80 countries
4、 on six continents. SMPTEs Engineering Documents, including Standards, Recommended Practices, and Engineering Guidelines, are prepared by SMPTEs Technology Committees. Participation in these Committees is open to all with a bona fide interest in their work. SMPTE cooperates closely with other standa
5、rds-developing organizations, including ISO, IEC and ITU. SMPTE Engineering Documents are drafted in accordance with the rules given in Part XIII of its Operations Manual. SMPTE ST 2068 was prepared by Technology Committee 10E. Intellectual Property At the time of publication no notice had been rece
6、ived by SMPTE claiming patent rights essential to the implementation of this Standard. However, attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. SMPTE shall not be held responsible for identifying any or all such patent rights. Spe
7、cifically, one or more multiplexing methods signaled by this Standard may be the subject of patent rights. SMPTE shall not be held responsible for identifying any or all such patent rights. Introduction This section is entirely informative and does not form an integral part of this Engineering Docum
8、ent. Stereoscopic 3D imaging systems deliver two images (left eye image and right eye image), that are arranged to be seen simultaneously or near simultaneously by the left and right eyes. Viewers then perceive increased depth in the picture, which becomes more like the natural binocular viewing exp
9、erience. One method of carrying stereoscopic signals in existing 2D HDTV systems is to multiplex two temporally or spatially sub-sampled images of a stereoscopic image pair into a single stream. This method of carriage is called the Frame Compatible packing method. This document provides a mechanism
10、 to signal the packing method used to create a Frame Compatible serial data stream. This signaling is based upon and is compatible with the H.264/MPEG-4 AVC Frame Packing Arrangement SEI message. Annex B Frame Compatible Packing Methods (informative) provides illustrations of the frame packing metho
11、ds covered by this standard. Figure 1 illustrates the process of creating a frame compatible image stream from a Stereoscopic 3D image pair. The general order of operations that occur when two images of a stereoscopic image pair are packed into one frame compatible image are as follows: (1) The inpu
12、t Stereoscopic serial data stream consisting of a stereoscopic image pair (Left Eye image and Right Eye image), as defined for example in SMPTE ST 292-2, Dual 1.5 Gb/s Serial Digital Interface for Stereoscopic Image Transport or SMPTE ST 425-4, Dual 3Gb/s Serial Digital Interface for Stereoscopic Im
13、age Transport, are first decoded into a Full resolution Left eye image (FrLe) and a Full resolution Right eye image (FrRe). The FrLe and FrRe images are then filtered prior to the application of temporal or spatial sub-sampling. SMPTE ST 2068:2013 Page 3 of 15 pages The sub-sampling process produces
14、 two half resolution sub-images Half spatial resolution Left eye / Right eye (HrLe / HrRe), or Half Temporal resolution Left eye / Right eye (HTrLe / HTrRe). These sub images may be half the horizontal, vertical or temporal resolution of the originating full resolution stereoscopic image pair. (2) T
15、he two HrLe and HrRe or HTrLe and HTrRe sub-images are then packed into an intermediate form in preparation for multiplexing into a single Frame Packed Image. The packing step may also format the sub-images by reversing the image orientation or pixel order. The two Frame Packed sub-images are then m
16、ultiplexed together to form the frame packed image. (3) The frame packed image (FpI) is then output as a frame compatible serial data stream in accordance with SMPTE ST 292-1, 1.5 Gb/s Serial Digital Interface or SMPTE ST 425-1, 3 Gb/s Serial Digital Interface. (4) Information describing the sub-sam
17、pling, packing method and multiplexing (Packing Method Signaling), is appended to the frame compatible serial data stream to facilitate interchange of Frame Compatible signals. Frame Packed ImageSpatial or TemporalSub-samplingFrame packingSMPTE ST 292-2 / 425-4Stereoscopic serial data streamPacking
18、Method SignallingSMPTE ST 292-1 / 425-1 Frame Compatible serial data streamHalf resolution Left Eye image(HrLe) / (HTrLe)Full resolution Left Eye Image(FrLe)Full resolution Right eye image(FrRe)Spatial or TemporalSub-samplingHalf resolution Right Eye image(HrRe) / (HTrRe)Figure 1 (Informative) Overv
19、iew of the frame packing operations SMPTE ST 2068:2013 Page 4 of 15 pages 1 Scope This standard defines a 3D Frame Compatible (3DFC) ancillary data packet that enumerates various frame packing methods in a manner compatible with Recommendation ITU-T H.264 (H.264) and ISO/IEC 14496-10 MPEG-4 AVC (MPE
20、G-4 AVC), Frame Packing Arrangement SEI message. This ancillary data packet provides information for the frame compatible transport of 10-bit stereoscopic image pairs (Left eye and Right eye images) as defined in dual 1.5 Gb/s and 3 Gb/s serial digital interfaces for stereoscopic image transport tha
21、t are temporally or spatially sub-sampled and combined to form a frame compatible serial data stream in accordance with 1.5 Gb/s and 3 Gb/s serial digital interfaces. The ancillary data packet is carried in the vertical ancillary (VANC) data space of the frame compatible serial data stream having th
22、e same pixel array structure as the originating stereoscopic image pair, and is used to signal the frame packing method utilized in order to facilitate interchange of Stereoscopic Frame Compatible signals. The information contained in this ancillary data packet could then be used to set the H.264/MP
23、EG-4 AVC Frame Packing Arrangement SEI message prior to delivery to a subsequent transmission delivery device. The precise translation between the 3DFC ancillary data packet and the Frame Packing Arrangement SEI message is not within the scope of this standard. Nor does this standard address other a
24、dditional H.264/MPEG-4 AVC SEI messages that may be required for transmission delivery of a 3D Frame Compatible signal. Definition of the filtering mechanism is not within the scope of this standard since implementers can employ a variety of standard or proprietary filtering methods to improve image
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