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Position tracking of automatic rack and pinion steering linkage system through hardware in the loop testing

机译:通过硬件在环测试中的自动齿条齿轮转向联动系统的位置跟踪

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Vehicle handling behavior is much influenced by the performance of steering system and its mechanism. Steering linkage play a very important role in maneuvering of a vehicle. In this paper, a set of kinematic relations of rack and pinion steering linkage system are modeled in MATLAB Simulink environment based on kinematic model equations is presented to study the relationship between steering wheel and tire angle. A Hardware-in-the-loop Simulations (HILS) test rig with actual rack and pinion mechanism has been set up using real time software environment from MathWorks namely xPC Target, LVDT and encoder sensors installed for data measurement at various steering angle. Results from simulation model demonstrate a linear pattern occurred from maximum lock-to-lock steering wheel angle and it is closely follow the sine input trend through HILS experiment with acceptable error.
机译:车辆操纵行为在很大程度上受转向系统及其机构的性能影响。转向联动装置在车辆操纵中起着非常重要的作用。本文基于运动学模型方程,在MATLAB Simulink环境中建立了一套齿轮齿条式转向联动系统的运动学关系模型,以研究方向盘与轮胎角度之间的关系。使用MathWorks的实时软件环境(即xPC Target,LVDT和编码器传感器)安装了具有实际齿条和小齿轮机构的硬件在环仿真(HILS)测试装置,该软件环境可在各种转向角进行数据测量。仿真模型的结果表明,在最大锁定至锁定方向盘角度时出现了线性模式,并且通过HILS实验,它正好跟随正弦输入趋势,并具有可接受的误差。

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