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

By: D'Azzo, John JContributor(s): Constantine H. HoupisMaterial type: TextTextSeries: Series Electrical EngineeringPublisher: Singapur : McGraw-Hill , 1988Edition: Tercera ediciónDescription: 906 páginas : ilustrado ; 21 centimetrosISBN: 0071001913Subject(s): Teoría del control | Sistemas linealesDDC classification: 629.832
Contents:
1. Introduction 2. Writing system equations 3. Solution of differential equations 4. Laplace transform 5. System representation 6. Control-system characteristics 7. Root locus 8. Frequency responce.....
Action note: Verificado 13-03-2019Abstract: Writing system equations - Solution of differential equations - Laplace transform - System representation - Control-system characteristics - Root locus - Frequency response - Closed-loop tracking performance based on the frequency response - Root-locus compensation - Cascade and feedback compensation : frequncy-response plots - Control-ratio modeling - Closed-loop pole-zero assignment (State-variable feedback) - Parameter sensitivity and inaccessible states - Liapunov's second method - Introduction to optimal control - Optimal design by use of quadratic performance index - Structural properties of linear multivariable control systems - Synthesis of linear multivariable regulators, observers, and trackers using entire eigenstructure assignment - Design of tracking systems using output feedback - Quantitative feedback theory (QFT) technique - Digital control systems.
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Libros/ General Libros/ General Biblioteca Central Euclides Jaramillo Arango
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Papel 629.832 D811 3ed. (Browse shelf) Ej.1 Available (Sin restricciones) 074011

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1. Introduction 2. Writing system equations 3. Solution of differential equations 4. Laplace transform 5. System representation 6. Control-system characteristics 7. Root locus 8. Frequency responce.....

Writing system equations - Solution of differential equations - Laplace transform - System representation - Control-system characteristics - Root locus - Frequency response - Closed-loop tracking performance based on the frequency response - Root-locus compensation - Cascade and feedback compensation : frequncy-response plots - Control-ratio modeling - Closed-loop pole-zero assignment (State-variable feedback) - Parameter sensitivity and inaccessible states - Liapunov's second method - Introduction to optimal control - Optimal design by use of quadratic performance index - Structural properties of linear multivariable control systems - Synthesis of linear multivariable regulators, observers, and trackers using entire eigenstructure assignment - Design of tracking systems using output feedback - Quantitative feedback theory (QFT) technique - Digital control systems.

Verificado 13-03-2019

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