Comparing fuzzy logic and backstepping control for a buck boost converter in electric vehicles

Elmehdi Ennajih, Hakim Allali, Ezzitouni Jarmouni, Ilias Ennaoui
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Abstract

Significant advances have been made in the control of DC/DC converters, owing to the effective combination of linear and nonlinear approaches. The above-mentioned approaches have greatly improved the efficiency as well as stability of the converter, even when faced with changing conditions. Nevertheless, the emergence of artificial intelligence has introduced new perspectives in the domain. The objective of the article is to examine two separate methodologies for controlling a boost-buck converter: using a nonlinear approach, especially backstepping, and utilizing artificial intelligence through fuzzy logic. The main aim of this work is to illustrate the inherent stability and robustness of fuzzy logic controllers compared to backstepping control in managing effectively various variations and challenges encountered in converter control.
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比较电动汽车中降压升压转换器的模糊逻辑控制和反步进控制
由于线性和非线性方法的有效结合,直流/直流转换器的控制取得了重大进展。上述方法大大提高了转换器的效率和稳定性,即使在条件不断变化的情况下也是如此。然而,人工智能的出现为这一领域引入了新的视角。本文旨在研究控制升压-降压转换器的两种不同方法:使用非线性方法,特别是反步法,以及通过模糊逻辑利用人工智能。这项工作的主要目的是说明,与反步进控制相比,模糊逻辑控制器在有效管理转换器控制中遇到的各种变化和挑战方面具有固有的稳定性和鲁棒性。
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