悬挂(拓扑)
控制理论(社会学)
工程类
模糊控制系统
控制工程
理论(学习稳定性)
变量(数学)
模糊逻辑
车辆动力学
频域
计算机科学
时域
智能控制
PID控制器
控制(管理)
电子稳定控制
模拟
领域(数学分析)
汽车工程
电子速度控制
控制系统
控制器(灌溉)
主动悬架
功能(生物学)
汽车模型
实时控制系统
道路交通管制
模型预测控制
最优控制
作者
Haihan Luo,S. H. Li,SHAOPU YANG,Guizhen Feng
标识
DOI:10.1177/10775463251410856
摘要
As vehicles gradually move towards intelligent development, using road perception information to improve suspension control has become a future development direction. This paper takes the efficient and stable preview control of semi-active suspension as the goal, proposes a variable domain fuzzy control algorithm for vehicle front preview, and verifies it on a real vehicle. A Gaussian function is designed based on the perceived road elevation and vehicle speed information to approximately simulate the road impact signal. Combined with variable domain fuzzy PID control, the preview information is effectively utilized. The simulation results show that on roads with speed bumps, the preview control algorithm can improve vehicle comfort (the maximum value is reduced by 41.35%), and at the same time maintain stability on smooth transition roads with speed bumps. Finally, the Great Wall Latte-PHEV hybrid vehicle was used as a prototype to carry out prototype vehicle modification and control strategy verification.
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