This book covers the modeling, analysis, and design of linear discrete control systems, illustrating all topics using the micro-computer implementation of digital controllers aided by MATLAB®, Simulink®, and FEEDBACK®. It describes the process of digital control, followed by a review of Z-transforms, feedback control concepts, and s-to-z plane c
This book covers the modeling, analysis, and design of linear discrete control systems, illustrating all topics using the micro-computer implementation of digital controllers aided by MATLAB®, Simulink®, and FEEDBACK®. It describes the process of digital control, followed by a review of Z-transforms, feedback control concepts, and s-to-z plane cHinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hemchandra Madhusudan Shertukde, SM'92, IEEE, holds a B.Tech from the Indian Institute of Technology Kharagpur, as well as an MS and Ph.D in electrical engineering with a specialty in controls and systems engineering from the University of Connecticut, Storrs, USA. Currently, he is professor of electrical and computer engineering for the College of Engineering, Technology, and Architecture (CETA) at University of Hartford, Connecticut, USA. He is also senior lecturer at the Yale School of Engineering and Applied Sciences (SEAS), New Haven, Connecticut, USA. The principal inventor of two commercialized patents, he has published several journal articles and written three solo books. Dr. Shertukde is the recipient of the 2017 IEEE EAB/SA Standards Education Award, 2017 IEEE-PES CT Chapter Outstanding Engineer Award, and the 2016 IEEE Award as the Chair of the Working Group C.5.159. He continues to be in leadership positions for several other Working Groups enabling IEEE-TC to publish different standards and User's Guides for Electrical Power Transformers.
Inhaltsangabe
Digital Control Introduction and Overview. Mathematical Models of Discrete Systems. Performance Criteria and the Design Process. Compensator Design via Discrete Equivalent. Compensator Design via Direct Methods. State-Variable Feedback Design Methods. Advanced Design Methods. Estimation of System State. Implementation Issues in Digital Control.
Digital Control Introduction and Overview. Mathematical Models of Discrete Systems. Performance Criteria and the Design Process. Compensator Design via Discrete Equivalent. Compensator Design via Direct Methods. State-Variable Feedback Design Methods. Advanced Design Methods. Estimation of System State. Implementation Issues in Digital Control.
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