Finite Zeros in Discrete Time Control Systems [electronic resource] / by Jerzy Tokarzewski.

Por: Tokarzewski, Jerzy [author.]Tipo de material: TextoTextoSeries Lecture Notes in Control and Information Science, 338Editor: Berlin, Heidelberg : Springer Berlin Heidelberg, 2006Descripción: IX, 324 p. 11 illus. Also available online. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9783540334651Trabajos contenidos: SpringerLink (Online service)Tema(s): Engineering | Systems theory | Engineering | Control Engineering | Systems Theory, ControlFormatos físicos adicionales: Sin títuloRecursos en línea: de clik aquí para ver el libro electrónico
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Springer eBooksResumen: A state space approach to the analysis of zeros of MIMO LTI discrete-time systems is presented. The basic mathematical tools used in this analysis are the Moore-Penrose pseudoinverse and singular value decomposition of the first nonzero Markov parameter of a system. The book starts with definition of invariant zeros and goes as far as a general characterization of output-zeroing inputs and the corresponding solutions, explicit formulas for maximal output-nulling invariant subspaces and for the zero dynamics. The objective of this book is to render the reader familiar with a certain method of analysis of multivariable zeros (which goes beyond the classical approach) and related problems. The minimal mathematical background that is required from the reader is a working knowledge of linear algebra and difference equations. The reader should be familiar with the basic concepts of linear system theory.
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Zeros and the Output-Zeroing Problem -- A General Solution to the Output-Zeroing Problem -- The Moore-Penrose Inverse of the First Markov Parameter -- Singular Value Decomposition of the First Markov Parameter -- Output-Nulling Subspaces in Strictly Proper Systems -- Output-Nulling Subspaces in Proper Systems -- Singular Systems.

A state space approach to the analysis of zeros of MIMO LTI discrete-time systems is presented. The basic mathematical tools used in this analysis are the Moore-Penrose pseudoinverse and singular value decomposition of the first nonzero Markov parameter of a system. The book starts with definition of invariant zeros and goes as far as a general characterization of output-zeroing inputs and the corresponding solutions, explicit formulas for maximal output-nulling invariant subspaces and for the zero dynamics. The objective of this book is to render the reader familiar with a certain method of analysis of multivariable zeros (which goes beyond the classical approach) and related problems. The minimal mathematical background that is required from the reader is a working knowledge of linear algebra and difference equations. The reader should be familiar with the basic concepts of linear system theory.

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