Adaptive State Feedback Control Method Based on Recursive Least Squares
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Date
2022
Authors
Aydoğdu, Ömer
Journal Title
Journal ISSN
Volume Title
Publisher
Kauno Technologijos Universitetas
Open Access Color
GOLD
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
This study revealed an adaptive state feedback control method based on recursive least squares (RLS) that is introduced for a time-varying system to work with high efficiency. Firstly, a system identification block was created that gives the mathematical model of the time-varying system using the input/output data packets of the controller system. Thanks to this block, the system is constantly monitored to update the parameters of the system, which change over time. Linear quadratic regulator (LQR) is renewed according to these updated parameters, and self-adjustment of the system is provided according to the changed system parameters. The Matlab/Simulink state-space model of the variable loaded servo (VLS) system module was obtained for the simulation experiments in this study; then the system was controlled. Moreover, experiments were carried out on the servo control experimental equipment of the virtual simulation laboratories (VSIMLABS). The effectiveness of the proposed new method was observed taking the performance indexes as a reference to obtain the results of the practical application of the proposed method. Regarding the analysis of simulation and experimental results, the proposed approach minimizes the load effect and noise and the system works at high efficiency. © 2022 Kauno Technologijos Universitetas. All rights reserved.
Description
Keywords
Adaptive state feedback, LQR, Recursive least squares, System identification, Variable loaded servo, lqr, recursive least squares, Electrical engineering. Electronics. Nuclear engineering, adaptive state feedback, variable loaded servo, system identification, TK1-9971
Turkish CoHE Thesis Center URL
Fields of Science
0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology
Citation
WoS Q
Q4
Scopus Q
Q3

OpenCitations Citation Count
2
Source
Elektronika ir Elektrotechnika
Volume
28
Issue
4
Start Page
27
End Page
34
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Citations
CrossRef : 2
Scopus : 2
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Mendeley Readers : 7
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