控制理论(社会学)
非线性系统
电子稳定控制
饱和(图论)
控制(管理)
汽车操纵
汽车工程
理论(学习稳定性)
工程类
扭矩转向
轮胎平衡
计算机科学
方向盘
数学
物理
人工智能
机器学习
组合数学
量子力学
作者
Weihe Liang,Chunyan Wang,Wanzhong Zhao,Gang Wu,Zhongqin Luan
标识
DOI:10.1177/09544062251359071
摘要
The four-wheel steer-by-wire system can improve the high-speed lateral stability of vehicles and is the inevitable trend in the development of steer-by-wire systems. However, tire nonlinearity and system uncertainty constrain the improvement of stability performance in four-wheel steer-by-wire systems. This work proposes a segmented control method for the four-wheel steer-by-wire vehicle system. Firstly, a basic controller is designed to solve the multiple perturbations and multi-input multi-output problems. Secondly, a nonlinear controller is designed to expand the stable bandwidth under extreme conditions. Then, combining the experimental design with the response surface method, multi-objective optimisation of the parameters, such as the switching time of the segmented controller, is conducted based on an improved non-dominated sorting genetic algorithm. Finally, hardware-in-the-loop tests and real vehicle tests are carried out to verify the effect of the controller. The test results illustrate that the designed controller can ensure the vehicle effectively tracks the yaw rate and sideslip angle under nonlinear conditions.
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