IMPROVING OF ELECTROMECHANICAL SERVO SYSTEMS ACCURACY

Aim. Improving of accuracy parameters and reducing of sensitivity to changes of plant parameters of nonlinear robust electromechanical servo systems of guidance and stabilization of lightly armored vehicle weapons based on multiobjective synthesis. Methodology. The method of multicriterion synthesis...

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Main Authors: B. I. Kuznetsov, T. B. Nikitina, V. V. Kolomiets, I. V. Bovdyj
Format: Article
Language:English
Published: National Technical University "Kharkiv Polytechnic Institute" 2018-12-01
Series:Електротехніка і електромеханіка
Subjects:
Online Access:http://eie.khpi.edu.ua/article/view/2074-272X.2018.6.04/149828
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spelling doaj-cebf9a3cec294e3cb81204340510b2902021-07-02T01:18:15ZengNational Technical University "Kharkiv Polytechnic Institute"Електротехніка і електромеханіка2074-272X2309-34042018-12-016333710.20998/2074-272X.2018.6.04IMPROVING OF ELECTROMECHANICAL SERVO SYSTEMS ACCURACYB. I. Kuznetsov0T. B. Nikitina1V. V. Kolomiets2I. V. Bovdyj3State Institution "Institute of Technical Problems of Magnetism of the NAS of Ukraine"Kharkov National Automobile and Highway UniversityKharkov National Automobile and Highway UniversityState Institution "Institute of Technical Problems of Magnetism of the NAS of Ukraine"Aim. Improving of accuracy parameters and reducing of sensitivity to changes of plant parameters of nonlinear robust electromechanical servo systems of guidance and stabilization of lightly armored vehicle weapons based on multiobjective synthesis. Methodology. The method of multicriterion synthesis of nonlinear robust controllers for controlling by nonlinear multimass electromechanical servo systems with parametric uncertainty based on the choice of the target vector of robust control by solving the corresponding multicriterion nonlinear programming problem in which the calculation of the vectors of the objective function and constraints is algorithmic and associated with synthesis of nonlinear robust controllers and modeling of the synthesized system for various modes of operation of the system, with different input signals and for various values of the plant parameters. Synthesis of nonlinear robust controllers and non-linear robust observers reduces to solving the system of Hamilton-Jacobi-Isaacs equations. Results. The results of the synthesis of a nonlinear robust electromechanical servo system for the guidance and stabilization of lightly armored vehicle weapons are presented. Comparison of the dynamic characteristics of the synthesized servo electromechanical system showed that the use of synthesized nonlinear robust controllers allowed to improve the accuracy parameters and reduce the sensitivity of the system to changes of plant parameters in comparison with the existing system. Originality. For the first time carried out the multiobjective synthesis of nonlinear robust electromechanical servo systems of guidance and stabilization of lightly armored vehicle weapons. Practical value. Practical recommendations are given on reasonable choice of the gain matrix for the nonlinear feedbacks of the regulator and the nonlinear observer of the servo electromechanical system, which allows improving the dynamic characteristics and reducing the sensitivity of the system to plant parameters changing in comparison with the existing system.http://eie.khpi.edu.ua/article/view/2074-272X.2018.6.04/149828electromechanical servo systems of guidance and stabilization of lightly armored vehicle weaponnonlinear robust systemmultiobjective synthesisdynamic characteristics
collection DOAJ
language English
format Article
sources DOAJ
author B. I. Kuznetsov
T. B. Nikitina
V. V. Kolomiets
I. V. Bovdyj
spellingShingle B. I. Kuznetsov
T. B. Nikitina
V. V. Kolomiets
I. V. Bovdyj
IMPROVING OF ELECTROMECHANICAL SERVO SYSTEMS ACCURACY
Електротехніка і електромеханіка
electromechanical servo systems of guidance and stabilization of lightly armored vehicle weapon
nonlinear robust system
multiobjective synthesis
dynamic characteristics
author_facet B. I. Kuznetsov
T. B. Nikitina
V. V. Kolomiets
I. V. Bovdyj
author_sort B. I. Kuznetsov
title IMPROVING OF ELECTROMECHANICAL SERVO SYSTEMS ACCURACY
title_short IMPROVING OF ELECTROMECHANICAL SERVO SYSTEMS ACCURACY
title_full IMPROVING OF ELECTROMECHANICAL SERVO SYSTEMS ACCURACY
title_fullStr IMPROVING OF ELECTROMECHANICAL SERVO SYSTEMS ACCURACY
title_full_unstemmed IMPROVING OF ELECTROMECHANICAL SERVO SYSTEMS ACCURACY
title_sort improving of electromechanical servo systems accuracy
publisher National Technical University "Kharkiv Polytechnic Institute"
series Електротехніка і електромеханіка
issn 2074-272X
2309-3404
publishDate 2018-12-01
description Aim. Improving of accuracy parameters and reducing of sensitivity to changes of plant parameters of nonlinear robust electromechanical servo systems of guidance and stabilization of lightly armored vehicle weapons based on multiobjective synthesis. Methodology. The method of multicriterion synthesis of nonlinear robust controllers for controlling by nonlinear multimass electromechanical servo systems with parametric uncertainty based on the choice of the target vector of robust control by solving the corresponding multicriterion nonlinear programming problem in which the calculation of the vectors of the objective function and constraints is algorithmic and associated with synthesis of nonlinear robust controllers and modeling of the synthesized system for various modes of operation of the system, with different input signals and for various values of the plant parameters. Synthesis of nonlinear robust controllers and non-linear robust observers reduces to solving the system of Hamilton-Jacobi-Isaacs equations. Results. The results of the synthesis of a nonlinear robust electromechanical servo system for the guidance and stabilization of lightly armored vehicle weapons are presented. Comparison of the dynamic characteristics of the synthesized servo electromechanical system showed that the use of synthesized nonlinear robust controllers allowed to improve the accuracy parameters and reduce the sensitivity of the system to changes of plant parameters in comparison with the existing system. Originality. For the first time carried out the multiobjective synthesis of nonlinear robust electromechanical servo systems of guidance and stabilization of lightly armored vehicle weapons. Practical value. Practical recommendations are given on reasonable choice of the gain matrix for the nonlinear feedbacks of the regulator and the nonlinear observer of the servo electromechanical system, which allows improving the dynamic characteristics and reducing the sensitivity of the system to plant parameters changing in comparison with the existing system.
topic electromechanical servo systems of guidance and stabilization of lightly armored vehicle weapon
nonlinear robust system
multiobjective synthesis
dynamic characteristics
url http://eie.khpi.edu.ua/article/view/2074-272X.2018.6.04/149828
work_keys_str_mv AT bikuznetsov improvingofelectromechanicalservosystemsaccuracy
AT tbnikitina improvingofelectromechanicalservosystemsaccuracy
AT vvkolomiets improvingofelectromechanicalservosystemsaccuracy
AT ivbovdyj improvingofelectromechanicalservosystemsaccuracy
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