Sampled-Data Control for Periodic Objects
Produktnummer:
18ad12f825f8f447ae91bb52f0115af6d6
Autor: | Drewelow, Wolfgang Jeinsch, Torsten Rosenwasser, Efim N. |
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Themengebiete: | Linear Control Systems Multivariable Control Systems Parametric Transfer Matrix Periodic Objects Polynomial Methods Sampled-data Control Time-Delay Systems Transfer Function Matrices |
Veröffentlichungsdatum: | 04.02.2023 |
EAN: | 9783031019555 |
Sprache: | Englisch |
Seitenzahl: | 263 |
Produktart: | Gebunden |
Verlag: | Springer International Publishing |
Produktinformationen "Sampled-Data Control for Periodic Objects"
This book is devoted to the problem of sampled-data control of finite-dimensional linear continuous periodic (FDLCP) objects. It fills a deficit in coverage of this important subject. The methods presented here are based on the parametric transfer matrix, which has proven successful in the study of sampled-data systems with linear time-invariant objects. The book shows that this concept can be successfully transferred to sampled-data systems with FDLCP objects. It is set out in five parts:· · an introduction to the frequency approach for the mathematical description of FDLCP objects including the determination of their structure and their representation as a serial connection of periodic modulators and a linear time-invariant object;· construction of parametric transfer matrix for different types of open and closed sampled-data systems with FDLCP objects;· the solution of problems of causal modal control of FDLCP objects based on the mathematical apparatus of determinant polynomial equations;· consideration of the problem of constructing a quadratic quality functional for the H2-optimization problem of a single-loop synchronous sampled-data system with control delay;· description of the general H2-optimization procedure.Necessary mathematical reference material is included at relevant points in the book.Sampled-Data Control for Periodic Objects is of use to: scientists and engineers involved in research and design of systems of systems with FDLCP objects; graduate students wishing to broaden their scope of competence; their instructors; and mathematicians working in thefield of control theory.

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