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

By: D'Azzo, John JoachimContributor(s): Houpis, Constantine HMaterial type: TextTextLanguage: English Publication details: New York : McGraw-Hill, c1995. Edition: 4th edDescription: xviii, 763 p. : ill. ; 25 cmISBN: 0070163219 (acidfree paper)Subject(s): Linear control systems | Control theory | Computer scienceDDC classification: 003.74 LOC classification: TJ213 | .D33 1995Online resources: WorldCat details
Contents:
TOC Introduction; writing systems 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 - design; frequency-response compensation - design; control-ratio modelling; design - closed-loop pole-zero assignment (state-variable feedback); parameter sensitivity and state space trajectories; digital control systems; entire eigenstructure assignment for multivariable systems; design of tracking systems using output feedback; quantitative feedback theory (QFT) technique. Appendices.
Summary: This text emphasizes undergraduate topics and the use of CAD programs, while providing a description of advanced topics and derivation techniques. Organized logically and for teaching flexibility, it instills the basic principles of feedback control important to all speciality areas of engineering.
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Holdings
Item type Current library Collection Call number Copy number Status Date due Barcode Item holds
Text Text Dr. S. R. Lasker Library, EWU
Reserve Section
Non-fiction 003.74 DAL 1995 (Browse shelf(Opens below)) C-1 Not For Loan 6748
Total holds: 0

Online version:
D'Azzo, John Joachim.
Linear control system analysis and design.
New York : McGraw-Hill, c1995
(OCoLC)607762169
Online version:
D'Azzo, John Joachim.
Linear control system analysis and design.
New York : McGraw-Hill, c1995
(OCoLC)622857475

Includes bibliographical references and index.

TOC Introduction; writing systems 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 - design; frequency-response compensation - design; control-ratio modelling; design - closed-loop pole-zero assignment (state-variable feedback); parameter sensitivity and state space trajectories; digital control systems; entire eigenstructure assignment for multivariable systems; design of tracking systems using output feedback; quantitative feedback theory (QFT) technique. Appendices.

This text emphasizes undergraduate topics and the use of CAD programs, while providing a description of advanced topics and derivation techniques. Organized logically and for teaching flexibility, it instills the basic principles of feedback control important to all speciality areas of engineering.

CSE

Rokon Mahamud

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