SYNERGO-CYBERNETIC APPROACH TO ADAPTIVE CONTROL SYSTEM SYNTHESIS FOR ELECTRIC POWER FACILITIES

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Main Authors: Porubay Oksana Vitalevna, Khasanova Madina Utkirbek qizi
Format: Recurso digital
Language:English
Published: Zenodo 2025
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_version_ 1866901099092377600
author Porubay Oksana Vitalevna
Khasanova Madina Utkirbek qizi
author_facet Porubay Oksana Vitalevna
Khasanova Madina Utkirbek qizi
contents <p><span lang="UZ">Modern electric power facilities are characterized by strong nonlinearities and uncertainties, which require advanced adaptive control strategies to ensure stability and robust performance. This paper investigates a synergo-cybernetic approach to adaptive control system synthesis based on the principles of self-organization and invariant manifolds. The method employs the analytical construction of aggregated regulators (AKAR) to design control laws that guide system dynamics toward predefined attractors, ensuring asymptotic stability and robustness to disturbances. The applicability of the proposed approach is demonstrated through its use in thermal power plants, wind energy conversion systems, and distributed microgrids. A comparative analysis with conventional nonlinear control techniques highlights the advantages of synergetic control in terms of adaptability, stability, and absence of chattering. The results confirm the potential of the synergo-cybernetic approach for modern energy system automation.</span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18022658
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle SYNERGO-CYBERNETIC APPROACH TO ADAPTIVE CONTROL SYSTEM SYNTHESIS FOR ELECTRIC POWER FACILITIES
Porubay Oksana Vitalevna
Khasanova Madina Utkirbek qizi
Synergo-cybernetic control
synergetic control
adaptive control systems
nonlinear control
electric power facilities
invariant manifolds
analytical construction of aggregated regulators (AKAR)
<p><span lang="UZ">Modern electric power facilities are characterized by strong nonlinearities and uncertainties, which require advanced adaptive control strategies to ensure stability and robust performance. This paper investigates a synergo-cybernetic approach to adaptive control system synthesis based on the principles of self-organization and invariant manifolds. The method employs the analytical construction of aggregated regulators (AKAR) to design control laws that guide system dynamics toward predefined attractors, ensuring asymptotic stability and robustness to disturbances. The applicability of the proposed approach is demonstrated through its use in thermal power plants, wind energy conversion systems, and distributed microgrids. A comparative analysis with conventional nonlinear control techniques highlights the advantages of synergetic control in terms of adaptability, stability, and absence of chattering. The results confirm the potential of the synergo-cybernetic approach for modern energy system automation.</span></p>
title SYNERGO-CYBERNETIC APPROACH TO ADAPTIVE CONTROL SYSTEM SYNTHESIS FOR ELECTRIC POWER FACILITIES
topic Synergo-cybernetic control
synergetic control
adaptive control systems
nonlinear control
electric power facilities
invariant manifolds
analytical construction of aggregated regulators (AKAR)
url https://doi.org/10.5281/zenodo.18022658