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Bilateral Control Method of Torque Drive/Angle Feedback Used for Steer-by-Wire System

机译:线控转向系统扭矩驱动/角度反馈的双向控制方法

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摘要

Steer-by-Wire system is capable of improving the performance of vehicle handling and stability, and assisting driving. It becomes a key technique to control front wheel angle and simulate the steering resistance delivered to the driver because of removing mechanical linkages between the steering wheel and the front wheels. This paper proposes a bilateral control method of steering wheel torque drive/pinion angle feedback, which is disaccustomed of controlling steering wheel block and steering actuator as master-slave plants. The pinion angle, steering wheel angle and its torque signals are used in the control logic without estimating or measuring the tire/road force. Simulations and vehicle experiments proceeded with this proposed method and the results confirmed that it achieves the bilateral control of the position and torque between the two plants. Meanwhile, the characteristics of the steering and returning dynamics obtained are very similar to conventional mechanical steering systems.
机译:线控转向系统能够改善车辆的操纵性能和稳定性,并有助于驾驶。由于取消了方向盘与前轮之间的机械连接,因此成为控制前轮角度并模拟传递给驾驶员的转向阻力的一项关键技术。提出了一种双向控制方向盘转矩驱动/小齿轮角度反馈的方法,这种方法不适合作为主从设备控制方向盘块和转向致动器。小齿轮角度,方向盘角度及其扭矩信号在控制逻辑中使用,而无需估计或测量轮胎/路面力。用该方法进行了仿真和车辆实验,结果证实该方法实现了两个设备之间位置和扭矩的双向控制。同时,获得的转向和返回动力学特性与常规机械转向系统非常相似。

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