Linear control system analysis and design : conventional and modern / John J. D'Azzo, Constantine H. Houpis.

By: D'Azzo, John JoachimContributor(s): Houpis, Constantine HSeries: McGraw-Hill series in electrical and computer engineeringPublisher: New York : McGraw-Hill, c1995Edition: 3rd edDescription: xviii, 763 p. : ill. ; 25 cmISBN: 0070163219 (acid-free paper)Subject(s): Control theory | Linear control systemsDDC classification: 629.832,DAZ
Contents:
Introduction (Page-1), Writing system equations (Page -21), Solution of differential equations (Page- -73), Laplace transform (Page-101), System representation (Page-139), Control system characteristics (Page- -185), Root locus (Page -209), Frequency response (Page-252), Closed loop tracking performance based on the frequency response (Page-307), Root-locus compensation (Page-343), Cascade and feedback compensation frequency-response plots (Page-393), Control ratio modeling (Page-428), Closed-loop pole-zero assignment(state variable feedback (Page-452)14.parameter sensitivity and inaccessible states (page -488)15.liapunov,s second method (page -505), Introduction to optimal control (Page-542), Optimal design by use of quadratic performance index (Page -577), Structure properties of linear multivariable control systems (Page-619), Synthesis of linear multivariable regulators, observers, and trackers using entire eigen structure assignment (Page -643), Design of tracking system using output feedback (Page-660), Quantitative feedback theory technique (Page-686), Digital control systems (Page -743).
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Item type Current location Home library Shelving location Call number URL Status Notes Date due Barcode Item holds
Book Book Military College of Signals (MCS)
Military College of Signals (MCS)
General Stacks 629.832,DAZ (Browse shelf) Link to resource Available Almirah No.74, Shelf No.7 MCS5692
Total holds: 0

Introduction (Page-1), Writing system equations (Page -21), Solution of differential equations (Page- -73), Laplace transform (Page-101), System representation (Page-139), Control system characteristics (Page- -185), Root locus (Page -209), Frequency response (Page-252), Closed loop tracking performance based on the frequency response (Page-307), Root-locus compensation (Page-343), Cascade and feedback compensation frequency-response plots (Page-393), Control ratio modeling (Page-428), Closed-loop pole-zero assignment(state variable feedback (Page-452)14.parameter sensitivity and inaccessible states (page -488)15.liapunov,s second method (page -505), Introduction to optimal control (Page-542), Optimal design by use of quadratic performance index (Page -577), Structure properties of linear multivariable control systems (Page-619), Synthesis of linear multivariable regulators, observers, and trackers using entire eigen structure assignment (Page -643), Design of tracking system using output feedback (Page-660), Quantitative feedback theory technique (Page-686), Digital control systems (Page -743).

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