汽车工业
趋同(经济学)
控制理论(社会学)
模糊逻辑
主动悬架
悬挂(拓扑)
滑模控制
工程类
计算机科学
法学
控制(管理)
材料科学
数学
物理
非线性系统
人工智能
政治学
航空航天工程
执行机构
量子力学
同伦
纯数学
经济
经济增长
作者
Wei Wang,Jinzhuang Xu,Jiqiang Zheng,Heng Zhao
标识
DOI:10.1080/15397734.2024.2349926
摘要
Vehicle suspension smoothness and stability are important indicators for evaluating vehicles. This paper firstly establishes a 1/4 automobile semi-active suspension model, which is used as a reference model for comparison by optimizing the canopy model, and secondly designs the sliding mode controller, including the tracking model error design and the control system design, and then incorporates the optimized saturation function convergence law to control the convergence speed, and then combines it with the fuzzy control to improve the accuracy and robustness of the control system. The optimized semi-active suspension control system will enhance the vehicle's vibration, smoothness, and stability. The final simulation test results show that the optimized sliding mode control suspension body vertical acceleration is reduced by 26.9%, suspension dynamic deflection by 36.7%, and tire dynamic load dynamic load is reduced by 28.4%.
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