An approximate solution of the affine-quadratic control problem based on the concept of optimal damping

The paper is devoted to a particular case of the nonlinear and nonautonomous control law design problem based on the application of the optimization approach. Close attention is paid to the controlled plants, which are presented by affine-control mathematical models characterized by integral quadrat...

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Main Author: Veremey Evgeny I.
Format: Article
Language:English
Published: Sciendo 2021-03-01
Series:International Journal of Applied Mathematics and Computer Science
Subjects:
Online Access:https://doi.org/10.34768/amcs-2021-0001
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spelling doaj-9ac108a3a11842b38ec360f2d9835c722021-09-06T19:41:54ZengSciendoInternational Journal of Applied Mathematics and Computer Science2083-84922021-03-0131151510.34768/amcs-2021-0001An approximate solution of the affine-quadratic control problem based on the concept of optimal dampingVeremey Evgeny I.0Applied Mathematics and Control Processes FacultySaint Petersburg State UniversityUniversitetskaja nab, 7–9, 199034, Saint Petersburg, RussiaThe paper is devoted to a particular case of the nonlinear and nonautonomous control law design problem based on the application of the optimization approach. Close attention is paid to the controlled plants, which are presented by affine-control mathematical models characterized by integral quadratic functionals. The proposed approach to controller design is based on the optimal damping concept firstly developed by V.I. Zubov in the early 1960s. A modern interpretation of this concept allows us to construct effective numerical procedures of control law synthesis initially oriented to practical implementation. The main contribution is the proposition of a new methodology for selecting the functional to be damped. The central idea is to perform parameterization of a set of admissible items for this functional. As a particular case, a new method of this parameterization has been developed, which can be used for constructing an approximate solution to the classical optimization problem. Applicability and effectiveness of the proposed approach are confirmed by a practical numerical example.https://doi.org/10.34768/amcs-2021-0001feedbackstabilitydamping controlfunctionaloptimization
collection DOAJ
language English
format Article
sources DOAJ
author Veremey Evgeny I.
spellingShingle Veremey Evgeny I.
An approximate solution of the affine-quadratic control problem based on the concept of optimal damping
International Journal of Applied Mathematics and Computer Science
feedback
stability
damping control
functional
optimization
author_facet Veremey Evgeny I.
author_sort Veremey Evgeny I.
title An approximate solution of the affine-quadratic control problem based on the concept of optimal damping
title_short An approximate solution of the affine-quadratic control problem based on the concept of optimal damping
title_full An approximate solution of the affine-quadratic control problem based on the concept of optimal damping
title_fullStr An approximate solution of the affine-quadratic control problem based on the concept of optimal damping
title_full_unstemmed An approximate solution of the affine-quadratic control problem based on the concept of optimal damping
title_sort approximate solution of the affine-quadratic control problem based on the concept of optimal damping
publisher Sciendo
series International Journal of Applied Mathematics and Computer Science
issn 2083-8492
publishDate 2021-03-01
description The paper is devoted to a particular case of the nonlinear and nonautonomous control law design problem based on the application of the optimization approach. Close attention is paid to the controlled plants, which are presented by affine-control mathematical models characterized by integral quadratic functionals. The proposed approach to controller design is based on the optimal damping concept firstly developed by V.I. Zubov in the early 1960s. A modern interpretation of this concept allows us to construct effective numerical procedures of control law synthesis initially oriented to practical implementation. The main contribution is the proposition of a new methodology for selecting the functional to be damped. The central idea is to perform parameterization of a set of admissible items for this functional. As a particular case, a new method of this parameterization has been developed, which can be used for constructing an approximate solution to the classical optimization problem. Applicability and effectiveness of the proposed approach are confirmed by a practical numerical example.
topic feedback
stability
damping control
functional
optimization
url https://doi.org/10.34768/amcs-2021-0001
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