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Design of a variable steering ratio for steer-by-wire vehicle with a joystick

机译:用操纵杆设计转向绕线车辆的可变转向比

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摘要

Steer-by-wire system has replaced the conventional mechanical linkages with electronic actuators. In this article, a joystick is utilized to substitute the conventional steering wheel and study the variable steering ratio design methods in this new human–machine interface. With this structure of steer-by-wire system, the steering angle and torque ratio can be designed flexibly. A dynamic model of joystick of steer-by-wire system is built based on bilateral control scheme. Through comparing the vehicle steering performance of joystick with steering wheel, three conventional steering ratio design methods are studied that are speed-dependent, speed- and angle-dependent and constant yaw rate gain. The drawbacks are analysed by three kinds of conventional steering ratio, and a novel variable yaw rate gain steering ratio design method is investigated. A driving simulator is used to verify and compare these steering ratio design methods. The computer simulation and experimental test results demonstrate that the variable yaw rate gain steering ratio design method can effectively guarantee vehicle steering performance.
机译:逐线系统用电子执行器取代了传统的机械连接。在本文中,利用操纵杆替代传统的方向盘,并研究这种新的人机界面中的可变转向比设计方法。利用这种逐线系统的这种结构,转向角和扭矩比可以灵活设计。基于双边控制方案,构建了逐线系统操纵杆动态模型。通过将操纵杆与方向盘的车辆转向性能进行比较,研究了三种传统的转向比设计方法,其是速度依赖性,速度和角度依赖性和恒定的横摆率增益。通过三种传统的转向比分析缺点,并研究了一种新的可变横摆率增益转向比设计方法。驾驶模拟器用于验证和比较这些转向比设计方法。计算机仿真和实验测试结果表明,可变横摆率增益转向比设计方法可以有效地保证车辆转向性能。

著录项

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 22:09:56

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