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Optimization of Parameters in the Hysteresis-based Steering Feel Model for Steer-by-Wire Systems *

机译:线控转向系统基于磁滞的转向感觉模型中的参数优化 *

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In rubber-wheeled vehicles, mechanical connection between steering wheel and front wheels provides steering related feedback to the driver. The torque fed back to the driver through the steering linkages and steering wheel, which is called steering feel, helps the driver in controlling the vehicle. The torque feedback is reproduced via artificial methods in steer-by-wire systems due to the lack of mechanical connection. Different approaches have been reported to describe the steering feel for steer-by-wire systems. A recent study reports a steering feel design based on Bouc-Wen hysteresis model. This model describes the steering feel through five constant coefficients, longitudinal velocity and steering wheel angle. In this work, in order to minimize the physical workload and the lateral acceleration under the consideration of handling performance, optimization of those five parameters has been studied. A 2-DOF bicycle model based on Magic tyre formula has been used for simulations. The effect of each parameter on steering feel has been identified for the optimization study. A driver model with a controller has been designed to perform comparable and repeatable tests. Weave and double lane change tests have been performed in order to demonstrate and quantify the optimization of the hysteresis model.
机译:在橡胶轮车辆中,方向盘和前轮之间的机械连接为驾驶员提供了与转向相关的反馈。通过转向连杆和方向盘反馈给驾驶员的扭矩(称为转向感)有助于驾驶员控制车辆。由于缺少机械连接,在线控转向系统中通过人工方法再现了扭矩反馈。已经报道了不同的​​方法来描述线控转向系统的转向感觉。最近的一项研究报告了基于Bouc-Wen磁滞模型的转向感觉设计。该模型通过五个恒定系数(纵向速度和方向盘角度)描述了转向感。在这项工作中,为了在考虑操纵性能的同时最大程度地减少物理工作量和横向加速度,已经研究了这五个参数的优化。基于Magic轮胎公式的2自由度自行车模型已用于仿真。已针对优化研究确定了每个参数对转向感觉的影响。设计了带有控制器的驱动程序模型,以执行可比较和可重复的测试。为了证明和量化磁滞模型的优化,已经进行了编织和双车道变更测试。

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