ITU-T G 726 APP III-1995 Comparison of ADPCM Algorithms - Appendix III to ITU-T Recommendation G 726 - General Aspects of Digital Transmission Systems (Study Group 15 44 pp)《自适应差分脉.pdf
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1、 STD*ITU-T RECMN G-72b APPENDIX I-ENGL L97Li 48bZ.571 0b258bb 7LiT INTERNATIONAL TELECOMMUNICATION UNION ITU-T TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU Appendix 111 (Rec. G.726) Appendix II (Rec. G.727) (05/94) GENERAL ASPECTS OF DIGITAL TRANSMISSION SYSTEMS COMPARISON - OF ADPCM ALGORITHMS A
2、ppendix 111 to ITU-T Recommendation G.726 Appendix II to ITU-T Recornmendation G.727 (Previously ?CCITT Recommendation?) FOREWORD The -T (Telecommunication Standardization Sector) is a permanent organ of the International Telecommunication Union (ITU). The ITU-T is responsible for studying technical
3、, operating and tariff questions and issuing Recommen- dations on them with a view to standardizing telecommunications on a worldwide basis. The World Telecommunication Standardization Conference (WTSC), which meets every four years, establishes the topics for study by the ITU-T Study Groups which,
4、in their turn, produce Recommendations on these topics. The approval of Recommendations by the Members of the -T is covered by the procedure laid down in WTSC Resolution No. 1 (Helsinki, March 1-12, 1993). Appendix Ei to T-T Recommendation G.726 and Appendix II to Recommendation -T G.727 were prepar
5、ed by ITU-T Study Group 15 (1993-1996) and were approved on the 16 of May 1994. NOTE In this Recommendation, the expression “Administration” is used for conciseness to indicate both a telecommunication administration and a recognized operating agency. c o m 1995 All rights reserved. No part of this
6、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. CONTENTS Background Overview of ADPCM algorithms Principles of Recommendations G.726 and G.727 and COM XVI-102 . 3.1 Adap
7、tive Prediction and Reconstruction of the Sign al . 3.2 Adaptive Quantizer. 3.3 Quantizer Scale Factor Adaptation . 3.4 Adaptation Speed Control . Principles of COM XVIII-101 . 4.1 Prediction 4.2 The Fixed AR Filter 4.3 Adaptive AR Filter . 4.4 Update Equations 4.5 Quantizer Adaptation ADPCM Decoder
8、 . 5.2 Synchronous Coding Adjustment . 5.1 General Description Objective Evaluation of ADPCM 6.1 Theoretical Background 6.3 Objective Measurements 6.2 Performance of the ADPCM Algorithms for Voiceband Data . Subjective Evaluation of ADPCM . 7.1 Subjective Evaluation of 32 kbitls ADPCM . 7.2 Subjecti
9、ve Evaluation of G.721 Extensions . 7.3 Subjective Evaluation of Embedded ADPCM Appendix I . References . Page 1 1 10 10 13 16 18 20 20 23 24 25 29 31 31 31 32 32 33 34 37 37 37 37 37 39 . App . IIUG.726 . App . IVG.727 (05194) i - _ STD-ITU-T RECMN G.72b APPENDIX I-ENGL I774 9Bb2591 Ob25Bb9 b57 App
10、. IIUG.726 - App. IyG.727 Appendix II to ITU-T Recommendation G.726 and Appendix II to ITU-T Recommendation G.727 COMPARISON OF ADPCM ALGORITHMS (Geneva, 1994) 1 Background During the period 1982-1990, the CCIT adopted several adaptive differential pulse code modulation (ADPCM) algorithms. First, th
11、e 32 kbits (ADPCM) algorithm described in Recommendation G.721 26; 61 was approved. Later on, Recommendation G.721 was extended with Recommendation G.723 to 40 kbits to support voice band data modems at the rate of 9.6 kbit/s. and to 24 kbids to allow reduction of the bit rate in cases of network co
12、ngestion 27. Prior to the definition of Recommendation G.723, other ADPCM algorithms of performance similar to the 40 kbids algorithm had been incorporated in DCME designs and used in telecommunications networks. These algorithms, which may be considered by bilateral agreement, are described in COM
13、xvDI-101 and COM WEI-102 of the 1984-1988 study period.) Finally, in July 1990, the CCITT combined RecommendationsG.721 and G.723 and added operation at 16 kbitls for overload situations. The combination resulted in a new Recommendation G.726. The CCITT also approved the embedded ADPCM algorithms of
14、 RecommendationG.727, which are extensions of the fixed rate ADPCM algorithms defined in Recommendation G.726. This appendix presents a unified introduction to all these algorithms. their main features and their performance. Clause 2 gives an overview of all ADPCM algorithms that the CCIT has consid
15、ered. Clause 3 reviews the principles of the algorithms of Recommendations G.726 and G.727 and COM Xvm-102. The principles of the algorithm of COM XVIIi-101 are described in clause 4. The remaining clauses outline the main subjective and objective results for the performance of the various algorithm
16、s. 2 Overview of ADPCM algorithms Figures 1 and 2 show a simplified block diagram of a G.726 encoder and decoder, respectively. Figures 3 and 4 show a simplified block diagram of a G.727 encoder and a decoder, respectively. In each set, the coder consists of a logarithmic- to-linear PCM converter, a
17、n adaptive quantizer, an inverse adaptive quantizer, and an adaptive predictor. The PCM converter converts the A-law or p-law PCM input signal s(k) to a uniform PCM signal (k is the sampling index for a sampling period of 125 ps). The predicted estimate of the input signal s,(k) is subtracted from t
18、he uniform PCM signal, sl(k), to yield a difference signal d(k): The difference signal is then transformed into a logarithmic presentation with the base 2 and scaled by a scale factor y(k) In Recommendation G.726, the quantizer used is a 31-, 1.5, 7- or 4-level non-uniform adaptive quantizer that st
19、ops adapting in the presence of a stationary input. This enhances the performance for voiceband data signals. In Recommen- dation G.727, the adaptive quantizer has 32, 16, 8 or 4 levels. Either quantizer codes the signal d(k) into I it does not require a change-over between speech and voiceband data
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