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Brief Notes in Advanced DSP: Fourier Analysis with MATLAB

Autor Artyom M. Grigoryan, Merughan Grigoryan
en Limba Engleză Hardback – 20 feb 2009
Based on the authors’ research in Fourier analysis, Brief Notes in Advanced DSP: Fourier Analysis with MATLAB® addresses many concepts and applications of digital signal processing (DSP). The included MATLAB® codes illustrate how to apply the ideas in practice.
The book begins with the basic concept of the discrete Fourier transformation and its properties. It then describes lifting schemes, integer transformations, the discrete cosine transform, and the paired transform method for calculating the discrete Hadamard transform. The text also examines the decomposition of the 1D signal by so-called section basis signals as well as new forms of 2D signal/image representation and decomposition by direction signals/images. Focusing on Fourier transform wavelets and Givens–Haar transforms, the last chapter discusses the problem of signal multiresolution.
This book presents numerous interesting problems and concepts of unitary transformations, such as the Fourier, Hadamard, Hartley, Haar, paired, cosine, and new signal-induced transformations. It aids readers in using new forms and methods of signals and images in the frequency and frequency-and-time domains.
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Specificații

ISBN-13: 9781439801376
ISBN-10: 1439801371
Pagini: 354
Ilustrații: 205 b/w images, 17 color images and Over 400
Dimensiuni: 156 x 234 x 23 mm
Greutate: 0.68 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press

Cuprins

Discrete Fourier Transform. Integer Fourier Transform. Cosine Transform. Hadamard Transform. Paired Transform-Based Decomposition. Fourier Transform and Multiresolution. References. Index.

Notă biografică

Artyom M. Grigoryan, Merughan Grigoryan

Descriere

Based on the authors’ research in Fourier analysis, this text addresses many concepts and applications of DSP. MATLAB® codes illustrate how to apply the ideas in practice. The book describes the discrete Fourier transform, lifting schemes, integer transforms, the discrete cosine transform, and the discrete Hadamard transform. It also examines the decomposition of the 1D signal by section basis signals as well as new forms of the 2D signal/image representation by direction signals/images. Focusing on Fourier transform wavelets and Givens–Haar transforms, the last chapter discusses the problem of signal multiresolution. A solutions manual is available for qualifying instructors.