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Lateral Dynamic Modeling and Verification of Vehicles with Steering Characteristics

机译:具有转向特性的车辆的横向动力学建模与验证

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This paper proposed the vehicle lateral dynamic modeling method including the characteristics of the steering system. The model can demonstrate the aligning torque and some other characteristics. For the steering system, the input is made up of the driver's torque, the assisting motor torque and the aligning torque obtained from the tire model, the corresponding output is the front wheel angle. The vehicle status information includes the sideslip angle, the yaw rate and the lateral displacement, and the aligning torque can be characterized. The steering system includes the influence of the steering system clearance, elastic components, the overall stiffness, and the ability to express the road feeling. The tire model includes the expression of different road surfaces, the influence of the steering system on the lateral stiffness characteristics, and the influence of the front wheel positioning parameters on the tire cornering characteristics. The lateral dynamic model is mainly used for simulation research and system performance evaluation. Then, the expression ability of the model is verified by the joint simulation of CarSim and Simulink. Finally, the experiment of a snake test was designed. It appears that the integrated model lays a foundation of the designing a controller in the future.
机译:提出了一种具有转向系统特性的车辆横向动态建模方法。该模型可以演示对准扭矩和其他一些特性。对于转向系统,输入由驾驶员扭矩,辅助电动机扭矩和从轮胎模型获得的定位扭矩组成,相应的输出为前轮角度。车辆状态信息包括侧滑角,横摆率和横向位移,并且可以表征对准扭矩。转向系统包括转向系统间隙,弹性部件,整体刚度以及表达道路感觉的能力的影响。轮胎模型包括不同路面的表达,转向系统对侧向刚度特性的影响以及前轮定位参数对轮胎转弯特性的影响。横向动力学模型主要用于仿真研究和系统性能评估。然后,通过CarSim和Simulink的联合仿真验证了模型的表达能力。最后,设计了蛇测试实验。似乎集成模型为将来设计控制器奠定了基础。

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