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1、Chapter 9The Laplace Transform- Analysis and Characterization of LTI systems Using LT 9.7 Analysis and Characterization of LTI systems Using LT h(t)H(s)x(t)y(t)=x(t)*h(t)X(s)Y(s)=X(s)H(s)Consider a LTI system:system function or transfer function9.7.1 CausilityCausal: h(t)=0 for t0 (left sided)ROC is
2、 the left-half plane to the left of the rightmost pole.Note: the converse of this statement is not necessarily true. And its just right only for H(S) is rational.Inverse case? Examples(1) A causal system(2) An uncausal system(3) An uncausal system9.7.2 Stability A stable systemH(s), ROC include jw-a
3、xis(i.e. Res=0)Note: this means H(jw)=H(s)|s=jw; in another words, an unstable system has no H(jw) existed. A rational causal and stable systemAll poles of H(s) lie in the left-half of the s-plane(i.e. all poles have negative real parts)uncausalstableExample 9.20ImReS-plane-112ImReS-plane-112ImReS-p
4、lane-112ImReS-plane-112Causalunstableanticausalunstablethe system function: Usually, a practical system is causal and stable.LT9.7.3 LTI Systems Characterized by Linear Constant-Coefficient Differential EquationsExample =9.7.4 Examples Relating System Behavior to the System FunctionExample 9.25We ha
5、ve knownThen Example 9.26Determine the system function as the following information:1. causal2. H(s) is rational ,has only 2 poles, at s=-2 and s=-43.If x(t)=1, then y(t)=04.The value of the impulse response at t=0+ is 4.From 1 and 2,we can deduce Solution:From 3,From 4,H(s) has a zero at s=0suppose
6、Example 9.27Consider a stable and causal system with impulse response h(t) and system function H(s).Suppose H(s) is rational,contains a pole at s=-2, and does not have a zero at the origin. The location of all other poles and zeros is unknown.Determine each of the following statements: true, false,o
7、r uncertain.1. FTh(t)e3t converge.False2. False3. th(t) is the impulse response of a causal and stable systemTrue4.dh(t)/dt contain at least one pole in its LT.True5.h(t) has finite duration.False6.H(s)=H(-s).False7.UncertainExamplea real,causal and stable LTI system with H(s) and frequency response
8、Show that Proof:SupposeImpulse response h(t) is real,causalwe can deduce at t=0+Because h(t) is real, Re(w) is even9.7.5 Butterworth FiltersAn N th-order lowpass Butterworth filterN=5Frequency response of Butterworth filtersAs more poles are added (higher-order Butterworth filter), the LPF gets better.Relationships between poles l
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