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Signalflow Diagrams and Feedback Theory
Synthesis of RC Networks
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admittance algebraic function amplitude analysis approximation asymptotic autocorrelation function bandwidth behavior characteristics circuit closed-loop poles closed-loop system coefficients compensation network complex components considered corresponding critical frequencies crosscorrelation curve damping ratio derivative describing function describing-function desired determined driving-point equation evaluated example feedback control systems finite func gain and phase Gi(s graphical Guillemin's impedance impulse response indicates infinity input signal integral Laplace transform limit cycle linear system locus loop mean-square error network synthesis node noise nonlinear system open-loop transfer function optimum output over-all system overshoot parameters path phase plane phase portrait plot pole-zero configuration poles and zeros polynomial problem procedure pulse RC network realized residue result return difference root loci root-locus root-locus method s-plane saturation Servomechanisms shown in Fig signal-flow diagram simple singular point sinusoidal specifications stability step-function response synthesis tandem techniques theory tion transient response transmittance variable velocity constant voltage yields