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Student Manual for Digital Signal Processing Using Matlab

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ISBN-10: 0131991086

ISBN-13: 9780131991088

Edition: 4th 2007

Authors: John G. Proakis, Vinay K. Ingle, Dimitris K. Manolakis

List price: $47.80
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Book details

List price: $47.80
Edition: 4th
Copyright year: 2007
Publisher: Prentice Hall PTR
Publication date: 4/5/2006
Binding: Paperback
Pages: 264
Size: 6.75" wide x 9.00" long x 0.50" tall
Weight: 0.836

Vinay K. Ingle is an Associate Professor of Electrical and Computer Engineering at Northeastern University. He received his Ph.D. in electrical and computer engineering from Rensselaer Polytechnic Institute in 1981. He has broad research experience and has taught courses on topics including signal and image processing, stochastic processes, and estimation theory. Professor Ingle is coauthor of the books: DSP Laboratory Using the ADSP-2181 Microprocessor (Prentice-Hall, 1991), Discrete Systems Laboratory (Brooks-Cole, 2000), and Statistical and Adaptive Signal proc-essing (Artech House, 2005).

Preface
Student Manual
Introduction
Use of the Student Manual in Conjunction with the Book
Reading Assignment for Chapter 1
About the Authors
Discrete-Time Signals and Systems
Learning Objectives
Discrete-Time Signals
Study Topics: Signals and Their Characteristics
Discrete-Time Systems
Study Topics: LTI Systems and Their-Properties
Summary
MATLAB Functions
Problems
The Transform
Learning Objectives
The Bilateral z-Transform
Study Topics: Important Properties of the z-Transform
Inversion of the z-Transform
Representation of an LTI System in the z-Domain
Solution of Difference Equations
Summary
MATLAB Functions
Problems
Discrete-Time Fourier Analysis
Learning Objectives
The Discrete-Time Fourier Transform
Study Topics: Definitions and Properties
The Frequency-Domain Representation of LTI Systems
Study Topics: The Transfer Function of LTI Systems
Sampling and Reconstruction of Analog Signals
Study Topics: Sampling and Reconstruction
Summary
MATLAB Functions
Problems
The Discrete Fourier Transform
Learning Objectives
The Discrete Fourier Series
Frequency Sampling and Reconstruction
The Discrete Fourier Transform and Its Properties
Study Topics: Important Properties of the DFT
Linear Convolution Using the DFT
The Fast Fourier Transform (FFT) Algorithms
Summary
MATLAB Functions
Problems
Realization of Digital Filters
Learning Objectives
IIR Filter Structures
Study Topics: IIR Filter Realizations
FIR Filter Structures
Study Topics: FIR Filter Realizations
Lattice Filter Structures
Study Topics: Lattice and Lattice-Ladder Filter Realizations
Summary
MATLAB Functions
Problems
FIR Filter Design
Learning Objectives
Specifications and Properties of FIR Filters
Study Topics: Filter specifications and FIR Filter Types
Window Design Technique
Study Topics: Window Design Method and Window Types
Frequency-Sampling Design Techniques
Study Topics: Sampling the Frequency Response
Optimal Equiripple Design Technique
Study Topics: Design Procedure
Summary
MATLAB Functions
Problems
IIR Filter Design
Learning Objectives
Design of Analog Lowpass Filters
Study Topics: Characteristics and Parameters of Butterworth, Chebyshev, and Elliptic Filters
Analog-to-Digital Filter Transformations
Study Topics: Filter Transformations
Frequency-Band Transformations
Study Topics: Frequency-Band Transformations for Digital Filters
Summary
MATLAB Functions
Problems
Solutions to Problems
Discrete-Time Signals and Systems
The z-transform
Discrete-Time Fourier Transform
The Discrete Fourier Transform
Digital-Filter Structures
FIR Filter Design
IIR Filter Design
Index