THEORETICAL AND NUMERICAL STUDY FOR STABILIZING CONTROL SYSTEMS

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This Book, which consists of eight chapters, focuses on the interplay between some important problems, namely the controllability problem, the eigenvalue assignment problem and the partial eigenvalue assignment problem, arising in linear control system theory and their solution by recent results and methodologies in numerical linear algebra. Our objective is to study stabilizing control systems of different orders through the problem of reassigning a part of the spectrum of the systems by feedback control, leaving the rest of the spectrum invariant using different numerical methods. This problem is called the partial eigenvalue assignment problem. In chapter two, a simple method for generating a nonsingular solution of the matrix equation XH=HX. In chapter five, an explicit solution to the partial eigenvalue assignment problem of the linear control system. In chapter six, we propose an explicit solution to the partial eigenvalue assignment problem of damped gyroscopic second order control systems. In chapter seven, we propose an explicit solution to the partial eigenvalue assignment problem of high order control systems in single input case

Autorentext

DR. Ehab Ahmed El-Sayed Ali,From 2007 up 2008 he is Lecturer, Suez Canal University, Egypt and from 2008 until now he is Assistant Professor Department Mathematics, College of Sciences, Al-kharj University, Saudi Arabia PROF. DR. Mohamed A. Ramadan Professor of Mathematics, Department of Mathematics, Faculty of Science, Menoufia University,Egypt

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Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783639246063
    • Sprache Englisch
    • Größe H220mm x B220mm
    • Jahr 2013
    • EAN 9783639246063
    • Format Kartonierter Einband (Kt)
    • ISBN 978-3-639-24606-3
    • Titel THEORETICAL AND NUMERICAL STUDY FOR STABILIZING CONTROL SYSTEMS
    • Autor Ehab Elsayed , Mohamed Ramadan
    • Untertitel The Partial Eigenvalue Assignment Problem for non Symmetric Matrices
    • Herausgeber VDM Verlag Dr. Müller e.K.
    • Anzahl Seiten 140
    • Genre Mathematik

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