信号与系统信号与系统信号与系统 (11).pdf
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1、BEIJING JIAOTONG UNIVERSITYThe Course Group of Signals and Systems,Beijing Jiaotong University.P.R.CHINA.Copyright 2020Signals and Systems Complex frequency-domain analysis for systemss-domain description for LTI systemsTransfer function and system propertiesImplementation structure for LTI systemss
2、-domain analysis for LTI system responseTransfer function and system impulse responseTransfer function and system frequency responseTransfer function and system stabilityTransfer function and system propertiesTransfer function and system impulse responsemmmmnnnH sb sbsb sbsasa sa()11101110Kszszszsps
3、pspmn1212()()()()()()N sD s()()pole-zero gain formpole-zero plotare zeros12,zzzmare poles12,pppn poles and zeros of H(s)poleszeross-planesjwpole-zero plot2jws3Example 6.23:The pole-zero plot for H(s)is shown in picture,and H()=1.Determine the transfer function H(s).sH ss3()2spH sKsz()()()110Thus K=1
4、 H()1AsSolution:sjw0u(t)etu(t)etu(t)1111s 111ss 111(1)simple poles at saxis Impulse response h(t)corresponding to H(s)Transfer function and system impulse responsesjw011sin(t)etu(t)sin(t)et u(t)sin(t)u(t)ss1(j)(j)ss(1j)(1j)1 ss(1j)(1j)1jj(2)conjugate complex poles1 j1 jTransfer function and system i
5、mpulse response Impulse response h(t)corresponding to H(s)wwHH ss(j)()jFor a stable system,we can obtain frequency response H(jw)The transfer function of a stable system is Its frequency response H(jw)issH ss1()wwwwHH ssj1(j)()jjTransfer function and system frequency response Frequency response H(jw
6、)corresponding to H(s)spH sKsziinjjm()()()11If H(s)is in pole-zero gain formWhen the system is stable,we can determine its frequency responsewwwpHKziinjjm(j)(j)(j)11Transfer function and system frequency response Frequency response H(jw)corresponding to H(s)Necessary and sufficient condition that a
7、LTI system is stable:ROC of transfer function H(s)includes jwaxis in s-plane.stable systemstable systemunstable systemTransfer function and system stabilityoswj0soswjoswjSolution:ssH s21()42Example 6.24:Analyze the stability and causality of the LTI system by ROC.ssH ss(2)(1)()6sRe()2 s1Re()2 sRe()1
8、It includes two simple poles 1,2.0swj220swj10swj1(1),the system is unstable and causal.sRe()2h tu tu ttt()4e()2e()2(2),the system is stable and noncausal.s1Re()2 h tutu ttt()4e()2e()2(3),the system is unstable and noncausal.sRe()1 h tututtt()4e()2e()2Solution:Example 6.24:Analyze the stability and c
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