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Automatic Cintrol by Meiling CHEN1 Lesson 6 (absolute) Stability Automatic control 2. Analysis
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Automatic Cintrol by Meiling CHEN2 Stability Internal behavior –The effect of all characteristic roots. External behavior –The effect by cancellation of some transfer function poles.
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Automatic Cintrol by Meiling CHEN3 Definition : A system is internal (asymptotic) stable, if the zero-input response decays to zero, as time approaches infinity, for all possible initial conditions. Asymptotic stable =>All the characteristic polynomial roots are located in the LHP (left-half-plan)
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Automatic Cintrol by Meiling CHEN4 Definition : A system is external (bounded-input, bounded-output) stable, if the zero-state response is bounded, as time approaches infinity, for all bounded inputs.. bounded-input, bounded-output stable =>All the poles of transfer function are located in the LHP (left-half- plan) Asymptotic stable => BIBO stable BIBO stable=> Asymptotic stable
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Automatic Cintrol by Meiling CHEN5 System response (i)First order system response (ii)Second order system response (iii)High order system response
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Automatic Cintrol by Meiling CHEN6 First order
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Automatic Cintrol by Meiling CHEN7 Second order (a)Two characteristic roots are real and distinct. (b)Two characteristic roots are equal. (c)Two characteristic roots are complex numbers. Three cases :
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Automatic Cintrol by Meiling CHEN8 Two characteristic roots are real and distinct.
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Automatic Cintrol by Meiling CHEN9 Two characteristic roots are equal
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Automatic Cintrol by Meiling CHEN10 Two characteristic roots are complex numbers Undamped natural frequency Damping ratio
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Automatic Cintrol by Meiling CHEN11
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Automatic Cintrol by Meiling CHEN12
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Automatic Cintrol by Meiling CHEN13
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Automatic Cintrol by Meiling CHEN14 Higher-order system Dominant rootnondominant root
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Automatic Cintrol by Meiling CHEN15
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Automatic Cintrol by Meiling CHEN16
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Automatic Cintrol by Meiling CHEN17
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Automatic Cintrol by Meiling CHEN18 Stability testing Properties of the polynomial coefficients : Differing algebraic signs Zero-valued coefficients All of the same algebraic sign, non zero At least one RHP root Has imaginary axis roots or RHP roots or both No direct information
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Automatic Cintrol by Meiling CHEN19 Routh-Hurwitz testing The number of RHP roots of P(s) is the number of algebra sign changes in the elements of the left column of the array.
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Automatic Cintrol by Meiling CHEN20 Example 1 Two roots in the RHP
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Automatic Cintrol by Meiling CHEN21 Example 2 no root in the RHP
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Automatic Cintrol by Meiling CHEN22 Example 3 Two roots in the RHP n 移位次數移 至 0 消失為止
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Automatic Cintrol by Meiling CHEN23 Example 4 factor
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Automatic Cintrol by Meiling CHEN24 no root in the RHP
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Automatic Cintrol by Meiling CHEN25 Example 5 + -
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