ITU-T T 82-1993 Information Technology - Coded Representation of Picture and Audio Information - Progressive Bi-Level Image Compression - Terminal Equipment and Protocols for Telem.pdf
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1、ITU-T RECflN*T*82 93 W 48b2591 0.586828 573 INTERNATIONAL TELECOMMUNICATION UNION ITU-T TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU TERMINAL EQUIPMENT AND PROTOCOLS FOR TELEMATIC SERVICES T.82 (03/93) INFORMATION TECHNOLOGY - CODED AUDIO INFORMATION - PROGRESSIVE BI-LEVEL IMAGE COMPRESSION REPRE
2、SENTATION OF PICTURE AND ITU-T Recommendation T.82 (Previously “CCITT Recommendation”) ITU-T RECMN*T*82 93 4Bb2.591 0.586829 40T Foreword ITU (International Telecommunication Union) is the United Nations Specialized Agency in the field of telecommunications. The ITU Telecommunication Standardization
3、 Sector (ITU-T) is a permanent organ of the ITU. Some 179 member countries, 84 telecom operating entities, 145 scientific and industrial organizations and 38 international organizations participate in ITU-T which is the body which sets world telecommunications standards (Recommendations). The approv
4、al of Recommendations by the members of ITU-T is covered by the procedure laid down in WTSC Resolution No. 1 (Helsinki, 1993). In addition, the World Telecommunication Standardization Conference (WTSC), which meets every four years, approves Recommendations submitted to it and establishes the study
5、programme for the foilowing period. In some areas of information technology which fail within ITU-Ts purview, the necessary standards are prepared on a collaborative basis with IS0 and EC. The text of ITlJ-T Recommendation T.82 was approved by the WTSC (Helsinki, March 1-12, 1993). The identical tex
6、t is also published as ISO/IEC International Standard 11544. NOTES 1 As a consequence of a reform process within the International Telecommunication Union (KU), the CCIT ceased to exist as of 28 February 1993. In its place, the ITU Telecommunication Standardization Sector (IT-T) was created as of 1
7、March 1993. Similarly, in this reform process, the CCIR and the IFRE3 have been replaced by the Radiocommunication Sector. In order not to delay publication of this Recommendation, no change has been made in the text to references containing the acronyms “CCITT, CCIR or IFRB” or their associated ent
8、ities such as Plenary Assembly, Secretariat, etc. Future editions of this Recommendation will contain the proper terminology related to the new ITU structure. 2 telecommunication administration and a recognized operating agency. In this Recommendation, the expression “Administration” is used for con
9、ciseness to indicate both a O ITU 1993 Ail rights reserved. No part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from the ITU. ITU-T RECMN*T*82 73 W 4862591 0586830 121 CON
10、TENTS Intro . 1 Intro . 2 Intro . 3 General characteristics . Stripes and data ordering . Encoder functional blocks Resolution reduction and differential layer encoder . Lowest resolution layer encoder Decoder functional blocks Intro . 3.1 Intro . 3.2 Intro . 4 scope . Normative references . Definit
11、ions . Symbols and abbreviations . 4.1 Acronyms 4.3 Mathematical symbols, operators, and indicators . 4.4 Variables with mnemonic names . Conventions . 5.1 Flow diagram conventions and symbols . 5.2 Template graphics . 5.3 Spatial ph ase . 5.4 Data structure graphics . Requirements . 6.1 General rul
12、es . 6.2 Data organization 6.3 Resolution reduction . 6.4 Differentiai-layer typical prediction . 6.5 Lowest-resolution-layer typical prediction . 6.7 Model templates and adaptive templates 6.6 Deterministic prediction (DP) . 6.8 Arithmetic coding . Test methods and datastream examples 7.1 Arithmeti
13、c coding . 7.2 Parameterized algorithm . 7.3 Datastream examples Annex A . Suggested minimum support for free parameters . Annex B . Design of the resolution reduction table B.1 Filtering B.2 Exceptions Annex C . Adaptive template changes C.1 General . C.2 Differential layers . C.3 Lowest resolution
14、 layer CCK Rec . T.82 (1993 E) Page 1 11 iv Vii Vii 1 1 1 2 2 3 3 3 3 3 4 4 7 7 7 12 13 16 19 23 26 43 44 51 55 56 57 57 58 60 60 60 60 V 1 ITU-T RECMN*T-82 93 4862593 05Bb833 Ob8 Annex D . Design of the probability-estimation table D . 1 Bayesian estimation D.2 Multiple contexts D.4 Rapid trackmg .
15、 D.3 MPSLPS parameterization . D.5 Reducing computational burden . Annex E - Patents . E.l Introductory remarks . E.2 List of parents . E.3 Contact addresses for patent information Annex F - Bibliography 63 63 63 63 64 64 68 68 68 69 71 11 CCITT Rec . T.82 (1993 E) ITU-T RECMN*T-82 93 4862591 058b83
16、2 TT4 Introduction and overview (This introduction does not form an integral part of this Recommendation I International Standard) This Recommendation I International Standard was prepared by the Joint Bi-level image experts Group (JBIG) of ISOAFC JTCllSC29WG9 and CCm SGVIII. The BIG experts group w
17、as formed in 1988 to establish a standard for the progressive encoding of bi-level images. A progressive encoding system transmits a compressed image by first sending the compressed data for a reduced- resolution version of the image and then enhancing it as needed by transmitting additional compres
18、sed data, which builds on that aiready transmitted. This Recommendation I International Standard defines a coding method having progressive, progressive-compatible sequential, and singleprogression sequential modes and suggests a method to obtain any needed low-resolution renditions. It has been fou
19、nd possible to effectively use the defined ding and resolution-reduction algorithms for the lossless coding of greyscale and color images as well as bi-level images. The Introduction-and-overview clause and Annexes A to F are informative and thus do not form an integral part of this Recommendation I
20、 Intemational Standard. Intro. 1 General characteristics This Specification defines a method for lossless compression encoding of a bi-level image (that is, an image that, like a black-and-white image, has only two colors). The defined method can also be used for coding greyscale and color images. B
21、eing adaptive to image characteristics, it is robust over image type. On scanned images of printed characters, observed compression ratios have been from 1,l to 1,5 times as great as those achieved by the MMR encoding algorithm (which is less complex) described in Recommendations T.4 (G3) and T.6 (G
22、4). On computer generated images of printed characters, observed compression ratios have been as much as 5 times as great. On images with greyscale rendered by halftoning or dithering, observed compression ratios have been from 2 to 30 times as great. The method is bit-preserving, which means that i
23、t, like Recommendations T.4 and T.6, is distortionless and that the final decoded image is identical to the original. The method also has “progressive” capabiity. When decoding a progressively coded image, a low-resolution rendition of the original image is made available first with subsequent doubi
24、ings of resolution as more data is decoded. Note that resolution reduction is performed from the higher to lower resolution layers, while decoding is performed from the lower to higher resolution layers. The lowest resolution image sent in a progressive sequence is a sequentially coded image. In a s
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