Modern Digital Signal Processing

Author:   Roberto Cristi (Naval Postgraduate School)
Publisher:   Cengage Learning, Inc
Edition:   New edition
ISBN:  

9780534400958


Pages:   380
Publication Date:   30 May 2003
Format:   Hardback
Availability:   Awaiting stock   Availability explained


Our Price $485.63 Quantity:  
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Modern Digital Signal Processing


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Full Product Details

Author:   Roberto Cristi (Naval Postgraduate School)
Publisher:   Cengage Learning, Inc
Imprint:   Nelson Engineering
Edition:   New edition
Dimensions:   Width: 18.80cm , Height: 2.20cm , Length: 23.80cm
Weight:   0.885kg
ISBN:  

9780534400958


ISBN 10:   0534400957
Pages:   380
Publication Date:   30 May 2003
Audience:   College/higher education ,  Professional and scholarly ,  Tertiary & Higher Education ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Unknown
Availability:   Awaiting stock   Availability explained

Table of Contents

1. FUNDAMENTALS OF SIGNALS AND SYSTEMS. Signals. Systems. Fourier Analysis of Discrete Time Signals. Fourier Analysis of Continuous Time Signals. 2. DISCRETE TIME PROCESSING OF CONTINUOUS TIME SIGNALS. Introduction. Structure of a Digital Filter. Frequency Domain Analysis of a Digital Filter. Quantization Errors. Prediction-Based Sampling Methods: Sigma and Sigma-Delta Modulation. 3. FOURIER ANALYSIS OF DISCRETE TIME SIGNALS. Introduction. Discrete Time Fourier Transform (DTFT). Discrete Fourier Transform (DFT). The DFT as an Estimate of the DTFT. DFT for Spectral Estimation. DFT for Convolution. DFT/DCT for Compression. The Fast Fourier Transform (FFT). 4. DIGITAL FILTERS. Introduction. Ideal Versus Nonideal Filters. Finite Impulse Response (FIR) Filters. Infinite Impulse Response (IIR) Filters. 5. DIGITAL FILTERS IMPLEMENTATION. Introduction. Elementary Operations. State Space Realization of Digital Filters. Robust Implementation of Digital Filters. Robust Implementation of Equiripple FIR Filters. 6. MULTIRATE DIGITAL SIGNAL PROCESSING: FUNDAMENTALS. Introduction. Statement of the Problem and Definitions. Analysis of Downsampling and Upsampling. Sampling Rate Conversion by a Rational Factor. Multistage Implementation of Digital Filters. Efficient Implementation of Multirate Systems. Application of Multirate DSP: Digital-to-Analog Conversion. Sampling Frequency and Quantization Error. 7. DFT FILTER BANKS AND TRANSMULTIPLEXERS. Introduction. DFT Filter Banks. Maximally Decimated DFT Filter Banks and Transmultiplexers. Transmultiplexers. Application of Transmultiplexers to Digital Communication Modulation. 8. MAXIMALLY DECIMATED FILTER BANKS. Introduction. Vector Spaces. Two-Channel Perfect Reconstruction Conditions. Design of Perfect Reconstruction Filter Banks with Real Coefficients. Lattice Implementation of Orthonormal Filter Banks. Application to an Audio Signal. 9. TIME FREQUENCY EXPANSION: AN INTRODUCTION. Introduction. The Short Time Fourier Transform (STFT). The Gabor Transform (GT). The Wavelet Transform. Recursive Multiresolution Decomposition. APPENDIXES. INDEX.

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1. FUNDAMENTALS OF SIGNALS AND SYSTEMS. Signals. Systems. Fourier Analysis of Discrete Time Signals. Fourier Analysis of Continuous Time Signals. 2. DISCRETE TIME PROCESSING OF CONTINUOUS TIME SIGNALS. Introduction. Structure of a Digital Filter. Frequency Domain Analysis of a Digital Filter. Quantization Errors. Prediction-Based Sampling Methods: Sigma and Sigma-Delta Modulation. 3. FOURIER ANALYSIS OF DISCRETE TIME SIGNALS. Introduction. Discrete Time Fourier Transform (DTFT). Discrete Fourier Transform (DFT). The DFT as an Estimate of the DTFT. DFT for Spectral Estimation. DFT for Convolution. DFT/DCT for Compression. The Fast Fourier Transform (FFT). 4. DIGITAL FILTERS. Introduction. Ideal Versus Nonideal Filters. Finite Impulse Response (FIR) Filters. Infinite Impulse Response (IIR) Filters. 5. DIGITAL FILTERS IMPLEMENTATION. Introduction. Elementary Operations. State Space Realization of Digital Filters. Robust Implementation of Digital Filters. Robust Implementation of Equiripple FIR Filters. 6. MULTIRATE DIGITAL SIGNAL PROCESSING: FUNDAMENTALS. Introduction. Statement of the Problem and Definitions. Analysis of Downsampling and Upsampling. Sampling Rate Conversion by a Rational Factor. Multistage Implementation of Digital Filters. Efficient Implementation of Multirate Systems. Application of Multirate DSP: Digital-to-Analog Conversion. Sampling Frequency and Quantization Error. 7. DFT FILTER BANKS AND TRANSMULTIPLEXERS. Introduction. DFT Filter Banks. Maximally Decimated DFT Filter Banks and Transmultiplexers. Transmultiplexers. Application of Transmultiplexers to Digital Communication Modulation. 8. MAXIMALLY DECIMATED FILTER BANKS. Introduction. Vector Spaces. Two-Channel Perfect Reconstruction Conditions. Design of Perfect Reconstruction Filter Banks with Real Coefficients. Lattice Implementation of Orthonormal Filter Banks. Application to an Audio Signal. 9. TIME FREQUENCY EXPANSION: AN INTRODUCTION. Introduction. The Short Time Fourier Transform (STFT). The Gabor Transform (GT). The Wavelet Transform. Recursive Multiresolution Decomposition. APPENDIXES. INDEX.


Author Information

Roberto Cristi is Associate Professor in the Department of Electrical and Computer Engineering at the Naval Postgraduate School in Monterey, California. His research and teaching interests include digital signal processing, control systems, adaptive systems, and Web-based education.

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