IEEE 1857.4-2018
$91.54
IEEE Standard for Second-Generation IEEE 1857 Video Coding
Published By | Publication Date | Number of Pages |
IEEE | 2018 | 199 |
New IEEE Standard – Active. A set of tools for efficient video coding, including directional intra prediction, variable block size inter prediction, context adaptive binary arithmetic coding, and the two corresponding decoding procedures, is defined in this standard. The target applications and services include, but are not limited to, UHDTV (ultra high definition TV), IP-based video surveillance, Internet video, IP-based video conference, IPTV, user-generated multimedia content, and other video/audio-enabled services and applications such as digital television broadcasting, digital storage media, and communication.
PDF Catalog
PDF Pages | PDF Title |
---|---|
1 | IEEE Std 1857.4ā¢-2018 Front cover |
2 | Title page |
4 | Important Notices and Disclaimers Concerning IEEE Standards Documents |
7 | Participants |
8 | Introduction |
9 | Contents |
11 | 1. Overview 1.1 Scope 1.2 Purpose 1.3 Applications |
12 | 1.4 Profiles and levels 1.5 Overview of the design characteristics 1.6 Predictive coding 1.7 Picture partitioned into coding units 1.8 Transform and quantization |
13 | 2. Normative references 3. Definitions |
18 | 4. Acronyms and abbreviations |
19 | 5. Operators and mathematical functions 5.1 Description 5.2 Arithmetic operators 5.3 Logical operators |
20 | 5.4 Relational operators 5.5 Bit-wise operators 5.6 Assignment operators |
21 | 5.7 Mathematical functions |
22 | 5.8 Structure relation 5.9 Description method of bitstream syntax, parsing process, and decoding process |
25 | 6. Structure of coded bitstream 6.1 Sequence |
27 | 6.2 Picture |
31 | 6.3 Slices 6.4 LCU, CTU, CU, and TB |
32 | 7. Bitstream syntax and semantics 7.1 Syntax description |
55 | 7.2 Semantics description |
84 | 8. Parsing process 8.1 kth-order Exp-Golomb codes |
85 | 8.2 ue(v) and se(v) 8.3 ae(v) |
107 | 9. Decoding process 9.1 Sequence decoding |
108 | 9.2 Picture decoding |
113 | 9.3 Slice decoding 9.4 LCU decoding |
114 | 9.5 CU decoding |
141 | 9.6 TB decoding |
148 | 9.7 Intra prediction |
155 | 9.8 Inter prediction |
160 | 9.9 Prediction compensation |
161 | 9.10 Deblocking filter |
165 | 9.11 Sample adaptive offset (SAO) |
169 | 9.12 Adaptive leveling filter |
172 | 9.13 Motion information storing |
174 | Annex A (normative) Start code emulation prevention |
175 | Annex B (normative) Profiles and levels B.1 Description B.2 Profiles |
178 | B.3 Levels |
183 | Annex C (normative) Bitstream buffer verifier C.1 Description C.2 Conventions C.3 Basic operation |
187 | C.4 Checking interval of the BBV buffer |
188 | Annex D (normative) Weighted quantization matrix |
189 | Annex E (informative) High dynamic range scene luminance fidelity optical-electro transfer function E.1 Description E.2 Definitions E.3 Electro-optical transfer function |
190 | E.4 Optical-electro transfer function |
191 | Annex F (normative)Scan table |
194 | Annex G (informative) Alternate implementation of advanced entropy code (AEC) decoding procedures |
196 | Annex H (informative) Reference implementation of reconstruction of signal of high dynamic range constant luminance system H.1 Description H.2 Bitstream syntax and semantics |
197 | H.3 Reconstruction of high dynamic range signal |
199 | Back cover |