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[rfeda推荐]MATLAB Simulations for Radar Systems Design
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[rfeda推荐]MATLAB Simulations for Radar Systems Design
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686页,英文,MATLAB Simulations for Radar Systems Design
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The emphasis of“MATLAB Simulations for Radar Systems Design”is on
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radar systems design.However,a strong presentation of the theory is provided
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so that the reader will be equipped with the necessary background to perform
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radar systems analysis.The organization of this book is intended to teach a
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conceptual design process of radars and related trade-off analysis and calcula-
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tions.It is intended to serve as an engineering reference for radar engineers
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working in the field of radar systems.The MATLAB?1 code provided in this
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book is designed to provide the user with hands-on experience in radar sys-
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tems,analysis and design.
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A radar design case study is introduced in Chapter 1 and carried throughout
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the text,where the authors’view of how to design this radar is detailed and
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analyzed.Trade off analyses and calculations are performed.Additionally,sev-
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eral mini design case studies are scattered throughout the book.
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“MATLAB Simulations for Radar Systems Design”is divided into two parts:
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Part I provides a comprehensive description of radar systems,analyses and
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design.A design case study,which is carried throughout the text,is introduced
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in Chapter 1.In each chapter the authors’view of how to design the case-study
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radar is presented based on the theory covered up to that point in the book.As
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the material coverage progresses through the book,and new theory is dis-
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cussed,the design case-study requirements are changed and/or updated,and of
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course the design level of complexity is also increased.This design process is
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supported by a comprehensive set of MATLAB 6 simulations developed for
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this purpose.This part will serve as a valuable tool to students and radar engi-
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neers in helping them understand radar systems,design process.This includes
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1)learning how to go about selecting different radar parameters to meet the
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design requirements;2)performing detailed trade-off analysis in the context of
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radar sizing,modes of operations,frequency selection,waveforms and signal
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processing;3)establishing and developing loss and error budgets associated
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with the design;and 4)generating an in-depth understanding of radar opera-
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tions and design philosophy.Additionally,Part I includes several mini design
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case studies pertinent to different chapters in order to help enhance understand-
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ing of radar design in the context of the material presented in different chap-
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ters.
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Part II includes few chapters that cover specialized radar topics,some of
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which is authored and/or coauthored by other experts in the field.The material
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included in Part II is intended to further enhance the understanding of radar
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system analysis by providing detailed and comprehensive coverage of these
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radar related topics.For this purpose,MATLAB 6 code has also been devel-
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oped and made available.
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All MATLAB programs and functions provided in this book can be down-
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loaded from the CRC Press Web site(
www.crcpress.com
).For this purpose,
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follow this procedure:1)from your Web browser type“
http://www.crc-
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press.com”,2)click on“Electronic Products”,3)click on“Download&
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Updates”,and finally 4)follow instructions of how to download a certain set
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of code off that Web page.Furthermore,this MATLAB code can also be down-
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loaded from The MathWorks Web site by following these steps:1)from your
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Web browser type:“
http://mathworks.com/matlabcentral/fileexchange/
”,2)
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place the curser on“Companion Software for Books”and click on“Communi-
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cations”.The MATLAB functions and programs developed in this book
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include all forms of the radar equation:pulse compression,stretch processing,
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matched filter,probability of detection calculations with all Swerling models,
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High Range Resolution(HRR),stepped frequency waveform analysis,ghk
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tracking filter,Kalman filter,phased array antennas,clutter calculations,radar
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ambiguity functions,ECM,chaff,and many more.
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Chapter 1 describes the most common terms used in radar systems,such as
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range,range resolution,and Doppler frequency.This chapter develops the
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radar range equation.Finally,a radar design case study entitled“MyRadar
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Design Case Study”is introduced.Chapter 2 is intended to provide an over-
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view of the radar probability of detection calculations and related topics.
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Detection of fluctuating targets including Swerling I,II,III,and IV models is
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presented and analyzed.Coherent and non-coherent integration are also intro-
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duced.Cumulative probability of detection analysis is in this chapter.Visit 2 of
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the design case study“MyRadar”is introduced.
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Chapter 3 reviews radar waveforms,including CW,pulsed,and LFM.High
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Range Resolution(HRR)waveforms and stepped frequency waveforms are
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also analyzed.The concept of the Matched Filter(MF)is introduced and ana-
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lyzed.Chapter 4 presents in detail the principles associated with the radar
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ambiguity function.This includes the ambiguity function for single pulse,Lin-
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ear Frequency Modulated pulses,train of unmodulated pulses,Barker codes,
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and PRN codes.Pulse compression is introduced in Chapter 5.Both the MF
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and the stretch processors are analyzed.
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Chapter 6 contains treatment of the concepts of clutter.This includes both
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surface and volume clutter.Chapter 7 presents clutter mitigation using Moving
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Target Indicator(MTI).Delay line cancelers implementation to mitigate the
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effects of clutter is analyzed.
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Chapter 8 presents detailed analysis of Phased Arrays.Linear arrays are
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investigated and detailed and MATLAB code is developed to calculate and plot
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the associated array patterns.Planar arrays,with various grid configurations,
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are also presented.
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Chapter 9 discusses target tracking radar systems.The first part of this chap-
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ter covers the subject of single target tracking.Topics such as sequential lob-
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ing,conical scan,monopulse,and range tracking are discussed in detail.The
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second part of this chapter introduces multiple target tracking techniques.
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Fixed gain tracking filters such as the and the filters are presented in
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detail.The concept of the Kalman filter is introduced.Special cases of the Kal-
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man filter are analyzed in depth.
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Chapter 10 is coauthored with Mr.J.Michael Madewell from the US Army
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Space and Missile Defense Command,in Huntsville,Alabama.This chapter
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presents an overview of Electronic Counter Measures(ECM)techniques.Top-
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ics such as self screening and stand off jammers are presented.Radar chaff is
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also analyzed and a chaff mitigation technique for Ballistic Missile Defense
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(BMD)is introduced.
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Chapter 11 is concerned with the Radar Cross Section(RCS).RCS depen-
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dency on aspect angle,frequency,and polarization is discussed.The target
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scattering matrix is developed.RCS formulas for many simple objects are pre-
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sented.Complex object RCS is discussed,and target fluctuation models are
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introduced.Chapter 12 is coauthored with Dr.Brian Smith from the US Army
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Aviation and Missile Command(AMCOM),Redstone Arsenal ..
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