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Notes on Digital Signal Processing : Practical Recipes for Design, Analysis and Implementation

ISBN: 9780131583344 | 0131583344
Edition: 1st
Format: Hardcover
Publisher: Prentice Hall
Pub. Date: 1/1/2011

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SummaryTable of ContentsAuthor Biography
The perfect DSP working desk reference:complete guide to applyingDSP techniques in advanced, practical applications° 42 step-by-step recipes for implementing advanced DSP techniques that were oncerestricted to "DSP gurus"° Includes design algorithms, processing sequences, and reference designs° Presents new spectral estimation techniques that achieve much finer resolution° An ideal complement to Lyons' best-selling Understanding Digital Signal Processing,Second Edition SummaryFrom cellphones to iPods, every leading-edge communications and multi... MORE
... MORE
Navigating the DSP Landscape
Sampling Baseband Signals
Ideal Sampling
Natural Sampling
Instantaneous Sampling
Practical Sampling
Reconstructing Physical Signals
Sampling Bandpass Signals
Mastering DFT Basics
Analyzing DFT Leakage
Exploring DFT Resolution
Characterizing Window Functions
Estimating Spectra with the Unmodified Periodogram
Estimating Spectra with the Modified Periodogram
Estimating Spectra with Bartlettrsquo;s Periodogram
Estimating Spectra with the Welch Periodogram
Designing FIR Filters: Background & Options
Designing FIR Filters: Linear Phase Approaches
Designing FIR Filters: Window Method
Designing FIR Filters: Kaiser Window Method
Designing FIR Filters: Parks-McClellan Algorithm
ThezTransform: Definitions & Properties
Computing the InversezTransform
Designing IIR Filters: Background & Options
Designing IIR Filters: Characteristics of Analog Prototype Filters
Designing IIR Filters: Surveying Analog Prototype Filter Families
Designing IIR Filters: Impulse Invariance
Designing IIR Filters: Bilinear Transformation
Multirate Signal Processing: Decimation Basics
Multirate Signal Processing: Interpolation Basics
Frequency-Shifting Techniques: Integer-Band Sampling
Understanding Complex & Analytic Signals
Generating Analytic Signals with FIR Hilbert Transformers
Generating Analytic Signals with Frequency-Shifted FIR Lowpass Filters
Generating Analytic Signals with IIR Phase-Splitting Networks
Generating Analytic Signals with Complex Equiripple FIR Filters
Generating I & Q Channels Digitally: Raderrsquo;s Approach
Parametric Modeling of Discrete-Time Signals
Table of Contents provided by Publisher. All Rights Reserved.
C. Britton Rorabaugh currently serves as Chief Scientist for a company that develops and manufactures specialized military communications equipment. He has extensive experience in communication system design and analysis, geolocation, radar processing, real-time software, numerical methods, computer graphics, C++, C, MATLAB®, and assembly languages for various microprocessors and DSP devices. Rorabaugh is associate editor for IEEE Signal Processing Magazine and author of multiple publications on wireless communications, DSP, digital filters, and error coding. He holds a B.S. and an M.S. in electrical engineering from Drexel University.


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