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matlab信号处理工具箱用户手册,英文版。学习数字信号处理的手册文档。
Revision History 1988 First printing November 1997 Second printing Revised January 1998 Third printing Revised September 2000 Fourth printing Revised for Version 5.0(Release 12) July 2002 Fifth printing Revised for Version 6.0( Release 13 December 2002 Online only Revised for Version 6.1(Release 13+) June 2004 Online only Revised for Version 6.2(Release 14) October 2004 Online only Revised for Version 6.2. 1(Release 14SP1) March 2005 Online only Revised for Version 6.2. 1(Release 14SP2) September 2005 Online only Revised for Version 6.4 (Release 14SP3) March 2006 Sixth printing Revised for Version 6.5(Release 2006a) September 2006 O Online only Revised for Version 6.6 (Release 2006b March 2007 Online only Revised for Version 6.7(Release 2007a) September 2007 Online only Revised for Version 6.8(Release 2007b) March 2008 Online onl Revised for Version 6.9(Release 200%a) October 2008 Online only Revised for Version 6.10(Release 2008b) March 2009 Online only Revised for Version 6.11(Release 2009a) September 2009 Online only Revised for Version 6.12 Release 2009b) March 2010 Online only Revised for Version 6.13(Release 2010a) September 2010 Online only Revised for Version 6.14 Release 2010b) April 2011 Online only Revised for Version 6.15 (Release 2011a) September 2011 Online only Revised for Version 6. 16(Release 2011b) March 2012 Online only Revised for Version 6. 17(Release 2012a) September 2012 Online onl Revised for Version 6.18(Release 2012b) March 2013 Online only Revised for Version 6. 19(Release 2013a September 2013 Online only Revised for Version 6.20( Release 2013b March 2014 Online only Revised for Version 6.21(Release 2014a October 2014 Online onl Revised for Version 6.22(Release 2014b) March 2015 Online only Revised for Version 7.0(Release 2015a) September 2015 Online only Revised for Version 7.1 ( Release 2015b) March 2016 Online only Revised for Version 7.2 (Release 2016a) September 2016 Online only Revised for Version 7.3 (Release 2016b March 2017 Onl Revised for Version 7.4(Release 2017 September 2017 Online only Revised for Version 7.5( Release 2017b) Contents Filtering, Linear Systems and Transforms Overview Filter Implementation and analysis 1-2 Filtering overview 1-2 Convolution and filtering 1-2 Filters and transfer functions 1-3 Filtering with the filter Function The filter function 1-6 Multirate Filter Bank Implementation Frequency Domain Filter Implementation 1-9 Anti-Causal, Zero-Phase Filter Implementation 1-10 Impulse response 1-13 Frequency Response 1-17 Digital Domain 1-17 Analog domain 1-24 Phase Response 1-27 Delay 1-31 Zero-Pole Analysis 1-33 Discrete-Time System Models 1-7 Transfer Function 1-7 Zero-Pole-Gain 1-37 State Space 1-38 Partial Fraction Expansion Residue Form) 1-39 Second-Order Sections(SOS) 1-40 Lattice structure 1-41 Convolution matrix 1-43 Continuous-Time System Models 1-45 Linear System Transformations 1-47 Discrete Fourier transform 1-49 Filter Design and Implementation Filter Requirements and specification 2-2 IIR Filter Design IIR VS FIR Filters 2-5 Classical IIR filters Other IIr filters IIR Filter Method Summary 2-6 Classical IIR Filter Design Using Analog Prototyping 2-7 Comparison of Classical IIR Filter Types 2-10 FIR Filter Design 2-19 FIR vS IIR Filters 2-19 FIR Filter Summary 2-20 Linear phase filters 2-20 Windowing Method 2-21 Multiband FIr Filter Design with Transition Bands 2-25 Constrained Least Squares FIR Filter design 2-31 Arbitrary- Response Filter Design 2-36 Special Topics in IIR Filter Design .2-42 Classic IIR Filter Design 2-42 Analog P pe design 2-42 Frequency Transformation 2-43 Filter discretization 2-45 Filtering Data With Signal Processing Toolbox Software 51 Selected Bibliography 2-70 i Conten Designing a Filter in idesign- Process Overview 3 Process Flow Diagram and Filter Design Methodology 3-2 Exploring the Process Flow Diagram 3-2 Selecting a response 3-4 Selecting a specification 3-4 Selecting an algorithm 3-5 Customizing the algorithm 3-7 Designing the Filter 3-7 De esign Analysis 3-8 Realize or apply the filter to Input data 3-9 Designing a filter in the Filter Builder gui Filter Builder Design Process 4-2 Introduction to filter builder 4-2 Design a Filter Using Filter Builder 4-2 Select a response 4-3 Select a Specification 4-5 Select an algorithm 4-5 Customize the algorithm 4-6 Analyze the Design 4-8 Realize or apply the Filter to Input data 4-8 Designing a FIR Filter Using filter Builder 4-10 FIR Filter Design 4-10 Compensate for Delay and Distortion Introduced by Filters 4-13 Comparison of Analog IIR Lowpass Filters 4-20 Frequency Response of an Analog Bessel Filter 4-22 Speaker crossover filters 4-23 i Filter Designer: A Filter Design and Analysis app 5 Filter Designer 5-2 Filter Design Methods 5-3 Advanced Filter Design Methods Using the Filter Designer App 5-5 Analyzing Filter responses 5-6 Filter Designer App panels Getting help 5-8 Getting Started with Filter Designer 5-9 Choosing a response type 5-10 Choosing a Filter Design Method 5-10 Setting the Filter Design Specifications 5-11 Computing the Filter Coefficients 5-12 Analyzing the Filter 5-13 Editing the Filter Using the Pole/Zero Editor 5-15 Converting the Filter Structure 5-16 Exporting a Filter Design 5-18 Generating a C Header fi 5-22 Generating MaTLAB Code 5-23 Managing Filters in the Current Session 5-24 Saving and opening filter Design Sessions 5-25 Importing a Filter Design 5-26 Import Filter Panel 5-26 Filter Structures 5-27 FIR Bandpass Filter with Asymmetric Attenuation 5-29 Arbitrary Magnitude Filter 5-32 Contents Statistical Signal Processing 6 Correlation and covariance 6-2 Background Information 6-2 Using xcorr and xcov Functions 6-3 Bias and normalization .6-3 Multiple channels 6-4 Spectral analysis 6-5 Background Information 6-5 Spectral Estimation Method 6-6 Nonparametric Methods 6-9 Periodogram 6-9 Performance of the Periodogram 6-11 The Modified Periodogram 6-18 Welch's Method 6-21 Bias and normalization in Welch's Method 6-24 caper Me 6-25 Cross-Spectral density function 6-28 Transfer Function estimate 6-29 Coherence Function 6-31 Parametric methods 6-34 Yule-Walker Ar method 6-36 Burg Method 6-38 Covariance and Modified Covariance Methods 6-42 MUSIC and eigenvector Analysis Methods 6-44 Eigenanalysis Overview 6-44 Selected Bibliography 6-47 Special Topics Windows 7-2 Why use windo 7-2 Available window functions 7-2 Graphical User Interface Tools 7-3 Basic Shapes 7-3 Getting Started with Window Designer 7-8 Window parameters 7-10 Window Designer menus 7-11 Generalized cosine windows 7-13 Kaiser window 7-15 Kaiser Windows in FIR Design 7-20 Chebyshev windo 7-23 Parametric Modeling 7-25 What is Parametric Modeling 7-25 Available Parametric Modeling Functions 7-25 Time-Domain Based modeling 7-26 Frequency-Domain Based Modeling 7-29 Resampling 7-32 Available resampling functions 7-32 resample Function 7-32 decimate and interp Functions 7-34 upfirdn Function 7-34 spline Functio 7-34 Cepstrum Analysis 7-35 FFT-Based Time-Frequency Analysis 7-39 Cross-Spectrogram of Complex signals 7-41 Median Filtering 7-44 Communications Applications 7-45 Modulation 7-45 Demodulation 7-46 Voltage Controlled oscillator 7-49 Deconⅴ olution 7-50 Chirp z-Transform 7-51 Contents

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