控制理论(社会学)
动力学(音乐)
方案(数学)
车辆动力学
电动汽车
控制(管理)
扭矩转向
计算机科学
方向盘
电子差速器
汽车工程
控制工程
工程类
物理
人工智能
数学
声学
数学分析
功率(物理)
量子力学
作者
Chintu Gurbani,Ramprasad Potluri
摘要
Abstract A four-wheel independent steering (4WIS) electric vehicle (EV) has a separate steering motor for each wheel, for a total of four motors. The existing works on the path-following control of these EVs mainly focus on path-following on level surfaces, neglecting (a) yaw disturbances due to motor faults, side winds, split mu; and (b) uncertainties in tire/road conditions and vehicle mass. A robust lateral dynamics control system (LaDCS) addresses these two items. This paper designs the LaDCS using a nontrivial modification of J. Ackermann's decoupling control, which lets the human driver focus on steering the EV, instead of also attending to items (a) and (b) above. LaDCS uses a structured singular value (SSV) synthesis-based controller to control each of the subsystems arising from the decoupling control. In simulations of path-following by a human-driven 4WIS EV in the presence of items (a) and (b), using the nonlinear model of the EV, the reduced-order versions of these SSV controllers ensure the desired performance within a degradation limit of 5%.
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