Finite-Time Stability: An Input-Output Approach (Wiley Series in Dynamics and Control of Electromechanical Systems) - Hardcover

9781119140528: Finite-Time Stability: An Input-Output Approach (Wiley Series in Dynamics and Control of Electromechanical Systems)
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SYSTEMATICALLY PRESENTS THE INPUT–OUTPUT FINITE–TIME STABILITY (IO–FTS) ANALYSIS OF DYNAMICAL SYSTEMS, COVERING ISSUES OF ANALYSIS, DESIGN AND ROBUSTNESS THE INTEREST IN FINITE–TIME CONTROL HAS CONTINUOUSLY GROWN IN THE LAST FIFTEEN YEARS. THIS BOOK SYSTEMATICALLY PRESENTS THE INPUT–OUTPUT FINITE–TIME STABILITY (IO–FTS) ANALYSIS OF DYNAMICAL SYSTEMS, WITH SPECIFIC REFERENCE TO LINEAR TIME–VARYING SYSTEMS AND HYBRID SYSTEMS. IT DISCUSSES ANALYSIS, DESIGN AND ROBUSTNESS ISSUES, AND INCLUDES APPLICATIONS TO REAL WORLD ENGINEERING PROBLEMS. WHILE CLASSICAL FTS HAS AN IMPORTANT THEORETICAL SIGNIFICANCE, IO–FTS IS A MORE PRACTICAL CONCEPT, WHICH IS MORE SUITABLE FOR REAL ENGINEERING APPLICATIONS, THE GOAL OF THE RESEARCH ON THIS TOPIC IN THE COMING YEARS. KEY FEATURES: INCLUDES APPLICATIONS TO REAL WORLD ENGINEERING PROBLEMS. INPUT–OUTPUT FINITE–TIME STABILITY (IO–FTS) IS A PRACTICAL CONCEPT, USEFUL TO STUDY THE BEHAVIOR OF A DYNAMICAL SYSTEM WITHIN A FINITE INTERVAL OF TIME. COMPUTATIONALLY TRACTABLE CONDITIONS ARE PROVIDED THAT RENDER THE TECHNIQUE APPLICABLE TO TIME–INVARIANT AS WELL AS TIME VARYING AND IMPULSIVE (I.E. SWITCHING) SYSTEMS. THE LMIS FORMULATION ALLOWS MIXING THE IO–FTS APPROACH WITH EXISTING CONTROL TECHNIQUES (E. G. H CONTROL, OPTIMAL CONTROL, POLE PLACEMENT, ETC.). THIS BOOK IS ESSENTIAL READING FOR UNIVERSITY RESEARCHERS AS WELL AS POST–GRADUATE ENGINEERS PRACTICING IN THE FIELD OF ROBUST PROCESS CONTROL IN RESEARCH CENTERS AND INDUSTRIES. TOPICS DEALT WITH IN THE BOOK COULD ALSO BE TAUGHT AT THE LEVEL OF ADVANCED CONTROL COURSES FOR GRADUATE STUDENTS IN THE DEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING, MECHANICAL ENGINEERING, AERONAUTICS AND ASTRONAUTICS, AND APPLIED MATHEMATICS.

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Systematically presents the input-output finite-time stability (IO-FTS) analysis of dynamical systems, covering issues of analysis, design and robustness The interest in finite-time control has continuously grown in the last fifteen years. This book systematically presents the input-output finite-time stability (IO-FTS) analysis of dynamical systems, with specific reference to linear time-varying systems and hybrid systems. It discusses analysis, design and robustness issues, and includes applications to real world engineering problems. While classical FTS has an important theoretical significance, IO-FTS is a more practical concept, which is more suitable for real engineering applications, the goal of the research on this topic in the coming years. Key features: Includes applications to real world engineering problems. Input-output finite-time stability (IO-FTS) is a practical concept, useful to study the behavior of a dynamical system within a finite interval of time. Computationally tractable conditions are provided that render the technique applicable to time-invariant as well as time varying and impulsive (i.e. switching) systems. The LMIs formulation allows mixing the IO-FTS approach with existing control techniques (e. g. H control, optimal control, pole placement, etc.). This book is essential reading for university researchers as well as post-graduate engineers practicing in the field of robust process control in research centers and industries. Topics dealt with in the book could also be taught at the level of advanced control courses for graduate students in the department of electrical and computer engineering, mechanical engineering, aeronautics and astronautics, and applied mathematics.
Contraportada:

SYSTEMATICALLY PRESENTS THE INPUT-OUTPUT FINITE-TIME STABILITY (IO-FTS) ANALYSIS OF DYNAMICAL SYSTEMS, COVERING ISSUES OF ANALYSIS, DESIGN AND ROBUSTNESS

The interest in finite-time control has continuously grown in the last fifteen years. This book systematically presents the input-output finite-time stability (IO-FTS) analysis of dynamical systems, with specific reference to linear time-varying systems and hybrid systems. It discusses analysis, design and robustness issues, and includes applications to real world engineering problems.

While classical FTS has an important theoretical significance, IO-FTS is a more practical concept, which is more suitable for real engineering applications, the goal of the research on this topic in the coming years.

Key features:

  • Includes applications to real world engineering problems.
  • Input-output finite-time stability (IO-FTS) is a practical concept, useful to study the behavior of a dynamical system within a finite interval of time.
  • Computationally tractable conditions are provided that render the technique applicable to time-invariant as well as time varying and impulsive (i.e. switching) systems.
  • The LMIs formulation allows mixing the IO-FTS approach with existing control techniques (e. g. H∞ control, optimal control, pole placement, etc.).
  • MATLAB® code examples are included for the solution of finite-time control problems discussed in the book.

This book is essential reading for university researchers as well as post-graduate engineers practicing in the field of robust process control in research centers and industries. Topics dealt with in the book could also be taught at the level of advanced control courses for graduate students in the department of electrical and computer engineering, mechanical engineering, aeronautics and astronautics, and applied mathematics.

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  • VerlagJohn Wiley & Sons Inc
  • Erscheinungsdatum2018
  • ISBN 10 1119140528
  • ISBN 13 9781119140528
  • EinbandTapa dura
  • Anzahl der Seiten184

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Francesco Amato, G. De Tommasi, Alfredo Pironti
ISBN 10: 1119140528 ISBN 13: 9781119140528
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Buchbeschreibung hardback. Zustand: New. Language: ENG. Artikel-Nr. 9781119140528

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Francesco Amato|Gianmaria De Tommasi|Alfredo Pironti
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ISBN 10: 1119140528 ISBN 13: 9781119140528
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Buchbeschreibung Gebunden. Zustand: New. FRANCESCO AMATO is Professor of Bioengineering, Dean of the School of Computer and Biomedical Engineering and the Coordinator of the Doctorate School in Biomedical and Computer Engineering at the University of Catanzaro, Italy. The scientific activity of Fr. Artikel-Nr. 556571709

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