ITU-R REPORT BT 2005-1995 Bit-Rate Reduction for Digital TV Signals (4 pp)《数码电视信号的位速率的减少》.pdf
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1、-1- Rep. ITU-R BT.2005 REPORT ITU-R BT.2005 BIT-RATE REDUCTION FOR DIGITAL TV SIGNALS (1995) 1 Introduction The rapid development of source coding techniques and their realization with the help of integrated circuits leads to the conclusion that in the near future many new services will be created w
2、hich are based on picture coding techniques. Applications will be found not only in the field of broadcasting but also in the area of interactive audiovisual communications. With the techniques available today, a high data rate reduction factor is achievable together with a high quality of the decod
3、ed picture. Therefore, efficient use of existing networks is possible and the costs of picture transmission can be significantly reduced. This Report takes the form of a bibliography with a brief summary given of the contents of each item. It contains books, papers and documents relevant to bit-rate
4、 reduction coding and error-correction giving basic information and many references for further investigation for the reader interested in more detailed information. During the compilation of this Report great care was taken to ensure that the books mentioned are commercially available and that the
5、papers are likely to be found in a technically-orientated library. 2 Introduction to bit-rate reduction techniques 2.1 Predictive, transform and subband coding techniques Jayant, N. and Noll, P.: Digital Coding of Waveforms. Prentice Hall 1984. Introduction to the principles of digital coding for vi
6、deo and speech: Sampling, Quantization, PCM, DPCM, Delta modulation, Delayed Decision Coding, Run-Length Coding, Subband Coding, Transform Coding. Survey of basic techniques with many references. Netravali, A. and Haskell, B.: Digital Pictures. Representation and Compression. Plenum Press 1988. Desc
7、ription of theoretical and practical bases for coding images: Numerical representation of visual information, Common Picture Communication Systems (PAL, NTSC, SECAM etc.), Redundancy-Statistics-Models, Visual Psychophysics, Basic Compression Techniques (PCM, DPCM, Transform Coding, Hybrid Transform
8、Coding), Examples of Codec Designs. Rosenfeld, A. and Kak, A.: Digital Picture Processing Vol. 1 Academic Press 1982. Mathematical description of the several parts of a coding scheme using stochastic input processes: Visual Perception, Digitization, Compression, Enhancement, Restoration, Reconstruct
9、ion. Volume 2 deals with the problems of picture analysis. Clarke, R.: Transform Coding of Images. Academic Press 1985. Theoretical and practical aspects of transform coding systems: Statistical Properties of Images, Orthogonal Transforms, Quantization and Bit Allocation, Practical Coding Techniques
10、, The Human Visual Response, Fast Transforms and System Implementation, Error and Noise Effects, Rate Distortion Theory and Image Coding. Rao, K. and Yip, P.: Discrete Cosine Transform Algorithms, Advantages, Applications. Academic Press 1990. Introductory treaties on DCT algorithms including two-di
11、mensional DCT with theoretical and practical basis for coding sounds and images. This book also presents several applications to filtering for decimation and interpolation, sound coding, video coding with schemes of combination with vector quantization, combination with motion compensation and hiera
12、rchical layered coding. Woods, J. (Editor): Subband Image Coding. Kluwer Academic Publisher 1991. This book describes the splitting-up of the input signal for several numbers of subbands, the layout of the filter characteristics for different types of filters and the coding possibilities for the res
13、ulting subbands. -2- Rep. ITU-R BT.2005 Pratt, W.: Image Transmission Techniques. Academic Press 1979. Overview of different coding schemes: Image Coding Applications of Vision Models, Predictive Coding, Transform Coding, Hybrid Coding, Frame Replenishment Coding of Television, Binary Image Compress
14、ion. Netravali, A. and Limb, J.: Picture Coding: A Review. Proc. of the ZEEE 68 (1980), pp. 366-407. A review of techniques used for digital encoding of picture material. Statistical models of picture signals are covered first, followed by a description of the coding techniques. Kunt, M., Ikonomopou
15、los, A. and Kocher, M.: Second Generation Image-Coding Techniques. Proc. of the ZEEE 73 (1983, pp. 549-574. A brief overview of first-generation coding techniques (DPCM, Transform Coding) is given. Afterwards local operator-based techniques and contour-texture oriented techniques are described takin
16、g into account the human visual system. Musmann, H., Pirsch, P. and Grallert, H.: Advances in Picture Coding. Proc. of the ZEEE 73 (1985), pp. 523- 548. Predictive coding techniques and transform coding techniques are described in combination with motion- compensated prediction. Different displaceme
17、nt estimation techniques are compared with respect to estimation accuracy. 2.2 Other techniques Mallat, S.: A Theory for Multiresolution Signal Decomposition: The Wavelet Representation. ZEEE Trans. on Pattern Analysis and Machine Intelligence 11 (1989), pp. 674-693. Mathematical description of the
18、wavelet transform and of the building up of an orthonormal set of basis functions for a wavelet representation applied to data compression in image coding. Chui, C.: An Introduction to Wavelets. Academic Press 1992. Introductory treaties on wavelet analysis with an emphasis on spline-wavelets and ti
19、me-frequency analysis. Classification of wavelets, the wavelets transforms, multiresolution analysis and wavelet algorithms for decomposition and reconstruction are presented. This book is suitable for beginners course on wavelet coding. Antoine, J.: Wavelet Analysis in Image Processing; in Vandewal
20、le, Boite, Moonen, Oosterlinck (editors) Signal Processing VI: Theories and Applications, Elsevier Science Publishers 1992, pp. 23-30. Review of the general properties of the 2D wavelet transform, both in its continuous and its discrete versions. Applications in image processing are also given. Daub
21、echies, I.: Orthonormal Bases of Compactly Supported Wavelets. Commun. of Pure and Applied Math. Vol. XLZ (1988), pp. 909-996. This paper describes the conditions for an orthonormal wavelet and methods to construct orthonormal wavelet bases of compact support. Malvar, H. and Staelin, D.: The LOT: Tr
22、ansform coding without Blocking Effects. ZEEE Trans. on Acoustics, Speech and Signal Processing 37 (1989), pp. 553-559. A theory of the lapped orthogonal transform and its optimization, a fast LOT algorithm derived from DCT, block effects and coding effectiveness compared to DCT, and an example of s
23、till image coding are presented. Lu, G.: Fractal image compression. Image Communication 5 (1993), pp. 327-343. The paper describes the principle and common techniques of fractal image compression and gives an introduction to the three main techniques. These are iterated function systems, segment-bas
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