SMPTE RDD 34-2015 LLVC C Low Latency Video Codec for Network Transfer.pdf
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1、 The attached document is a Registered Disclosure Document prepared by the proponent identified below. It has been examined by the appropriate SMPTE Technology Committee and is believed to contain adequate information to satisfy the objectives defined in the Scope, and to be technically consistent.
2、This document is NOT a Standard, Recommended Practice or Engineering Guideline, and does NOT imply a finding or representation of the Society. Errors in this document should be reported to the proponent identified below, with a copy to engsmpte.org. All other inquiries in respect of this document, i
3、ncluding inquiries as to intellectual property requirements that may be attached to use of the disclosed technology, should be addressed to the proponent identified below. Proponent contact information: Toshiaki Kojima Sony Corporation 4-14-1 Asahi-cho, Atsugi Kanagawa, 243-0014 Japan Email: Toshiak
4、i.K Page 1 of 32 pages SMPTE RDD 34:2015 SMPTE REGISTERED DISCLOSURE DOCUMENT LLVC Low Latency Video Codec for Network Transfer Copyright 2015 by THE SOCIETY OF MOTION-PICTURE AND TELEVISION ENGINEERS 3 Barker Avenue, White Plains, NY 10601 (914) 761-1100 Approved September 1, 2015 SMPTE RDD 34:2015
5、 Page 2 of 32 pages Table of Contents Page Introduction 3 1 Scope . 3 2 Mathematical Operators 4 2.1 Arithmetic Operators . 4 2.2 Mathematical Functions 4 3 Terms and Definitions 5 3.1 Codestream . 5 3.2 Coefficient . 5 3.3 Component 5 3.4 CU . 5 3.5 Decomposition level 5 3.6 Entropy decoding 5 3.7
6、Entropy encoding 5 3.8 HB CU . 5 3.9 LB CU 5 3.10 Picture . 5 3.11 Precision 5 3.12 Quantization 6 3.13 Sub-band . 6 3.14 TU 6 3.15 Word 6 3.16 VLC . 6 3.17 VLD . 6 4 Overview of Codec Characteristics . 7 4.1 Codec Key Technologies . 7 4.2 Encoding/Decoding Block Diagram . 8 5 Structure of Codestrea
7、m 9 5.1 Overall . 9 5.2 Picture . 10 5.3 TU (Transmission Unit) 11 5.4 CU (Coding Unit) . 12 6 Video Decoder . 15 6.1 Video Decoder Flow 15 6.2 Scanning of Coefficients 16 6.3 VLD (Variable Length Decoding) . 17 6.3.1 VLD Parameters . 18 6.3.2 Initialization 18 6.3.3 DPT Value Decoding 19 6.3.4 SGN
8、Value Decoding . 20 6.3.5 ABS Value Decoding 20 6.3.6 Decoding Example . 21 6.4 Inverse Quantization . 22 6.5 Inverse Wavelet Transform . 23 6.6 Inverse Wavelet Transform and Post-Inverse Wavelet Transform 26 6.7 Post Inverse Wavelet Transform and Coding Unit 27 7 IP Mapping of Codestream 29 7.1 Ove
9、rall . 29 7.2 Frame (Field) Support of Media Payload 29 7.3 RTP Packetization of Codestream 30 Annex A Encoding, Packetizing, De-Packetizing and Decoding (Informative). 31 Annex B Bibliography (Informative) 32 SMPTE RDD 34:2015 Page 3 of 32 pages Introduction The highest speed network environment th
10、at is readily available is 10GB Ethernet. Considering the bandwidth required for high resolution HD and UHDTV video, 10GB is not necessarily sufficient and it is desirable to implement some degree of video compression during transfer across the network. The major requirements for such a video compre
11、ssion scheme are low latency, and high picture quality. However, there is a trade-off between low latency, compression ratio, and picture quality. The video compression described in this RDD provides low latency of less than one video frame and is able to offer visually lossless quality. 1 Scope Thi
12、s RDD describes the Low Latency Video Codec (LLVC) and related technical information; in particular, a description is given of an example decoder implementation with sub-sampling scheme of 4:2:2 and 4:4:4. The following items are four main elements described in this RDD: a) The codec characteristics
13、: brief introduction to the technologies which offer low memory/low latency and high quality simultaneously. Block diagrams of the encoding and decoding processes are also shown. b) The codestream: a compressed image data representation which includes all necessary data to allow a (full or approxima
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