路面
加速度
主动悬架
控制理论(社会学)
悬挂(拓扑)
振动
控制器(灌溉)
滑模控制
计算机科学
表面粗糙度
模糊控制系统
模糊逻辑
平滑度
车辆动力学
信号(编程语言)
表面光洁度
工程类
汽车工程
材料科学
执行机构
控制(管理)
声学
非线性系统
人工智能
数学
物理
复合材料
土木工程
数学分析
生物
程序设计语言
纯数学
机械工程
经典力学
量子力学
农学
同伦
作者
Zhijun Deng,Zhiwei He,Bo Shi
摘要
Active suspension system can effectively reduce vibration amplitude caused by the excitation of uneven road surface and improve the smoothness and handling stability of the vehicle. In this study, the road surface roughness is identified by using LIDAR, and combined with the dynamic signal of the driving vehicle collected by sensors, the two signals are input into the active suspension fuzzy sliding mode controller designed to output the optimal damping force. The effectiveness of the fuzzy sliding control strategy is carried out by numerical simulation based on the whole vehicle model. The results show that the proposed control strategy of the active suspension system with road surface roughness identification performs better in five performance evaluation indexes, in which the body pitch angular acceleration is optimized by 53.75%, and the other performance evaluation indexes are optimized by about 12%.
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