Feedback Control Theory
(eBook)

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Published
Dover Publications, 2013.
Status
Available Online

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Format
eBook
Language
English
ISBN
9780486318332

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Citations

APA Citation, 7th Edition (style guide)

John C. Doyle., John C. Doyle|AUTHOR., Bruce A. Francis|AUTHOR., & Allen R. Tannenbaum|AUTHOR. (2013). Feedback Control Theory . Dover Publications.

Chicago / Turabian - Author Date Citation, 17th Edition (style guide)

John C. Doyle et al.. 2013. Feedback Control Theory. Dover Publications.

Chicago / Turabian - Humanities (Notes and Bibliography) Citation, 17th Edition (style guide)

John C. Doyle et al.. Feedback Control Theory Dover Publications, 2013.

MLA Citation, 9th Edition (style guide)

John C. Doyle, John C. Doyle|AUTHOR, Bruce A. Francis|AUTHOR, and Allen R. Tannenbaum|AUTHOR. Feedback Control Theory Dover Publications, 2013.

Note! Citations contain only title, author, edition, publisher, and year published. Citations should be used as a guideline and should be double checked for accuracy. Citation formats are based on standards as of August 2021.

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Grouped Work ID09dd4de8-7165-5118-0522-2f1cb9dff953-eng
Full titlefeedback control theory
Authordoyle john c
Grouping Categorybook
Last Update2023-10-07 19:13:09PM
Last Indexed2024-04-24 02:12:52AM

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Image Sourcehoopla
First LoadedNov 27, 2023
Last UsedJan 22, 2024

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    [synopsis] => An excellent introduction to feedback control system design, this book offers a theoretical approach that captures the essential issues and can be applied to a wide range of practical problems. Its explorations of recent developments in the field emphasize the relationship of new procedures to classical control theory, with a focus on single input and output systems that keeps concepts accessible to students with limited backgrounds. The text is geared toward a single-semester senior course or a graduate-level class for students of electrical engineering. The opening chapters constitute a basic treatment of feedback design. Topics include a detailed formulation of the control design program, the fundamental issue of performance/stability robustness tradeoff, and the graphical design technique of loopshaping. Subsequent chapters extend the discussion of the loopshaping technique and connect it with notions of optimality. Concluding chapters examine controller design via optimization, offering a mathematical approach that is useful for multivariable systems.
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