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Research Article | Open Access

Chaotic dynamics analysis and control of fractional-order ESER systems using a high-precision Caputo derivative approach

XiongFei Chi1Ting Wang1ZhiYuan Li2( )
Department of Mechanical and Electrical Engineering, Ordos Vocational College, Ordos 017010, China
College of Date Science and Application, Inner Mongolia University of Technology, Hohhot 010080, China
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Abstract

This paper investigates the chaotic dynamics and control of a fractional-order energy-saving and emission-reduction (ESER) system using a high-precision method. By constructing a four-dimensional fractional-order system, the complex interactions between new energy, carbon emissions, economic growth, and carbon trading volume are studied. A novel high-precision numerical method, based on generating functions, is introduced to analyze the dynamic behaviors of the system at various fractional derivatives and parameters. Numerical simulations find all kinds of dynamic behaviors, including stable, rapid divergence, and chaotic attractors. In this study, we design feedback and adaptive control strategies to achieve chaos synchronization and system stability. The results highlight the effectiveness of the proposed control methods in stabilizing the system and synchronizing drive-response systems, underscoring the pivotal role of fractional-order derivatives in regulating system dynamics.

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Electronic Research Archive
Pages 3613-3637

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Cite this article:
Chi X, Wang T, Li Z. Chaotic dynamics analysis and control of fractional-order ESER systems using a high-precision Caputo derivative approach. Electronic Research Archive, 2025, 33(6): 3613-3637. https://doi.org/10.3934/era.2025161

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Received: 02 May 2025
Revised: 30 May 2025
Accepted: 06 June 2025
Published: 11 June 2025
©2025 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0)