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Vehicle modeling methods for real-time dynamic simulation using suspension composite joints

机译:悬架复合关节实时动态仿真的车辆建模方法

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摘要

New vehicle modeling methods for real-time dynamic simulation using suspension composite joints are presented. The suspension composite joints are derived and utilized to reduce the computation time of the simulation without any degradation of kinematic accuracy of the suspension systems. The joints are modeled using massless links on the suspension members that have small masses but have important kinematic functions, and the kinematics of the knuckles or axles of suspension systems are derived. Three vehicle modeling methods are tested using the joints: kinematic steering, compliant tie-rod, and force driving steer vehicle models. The latter two are constructed to represent the steering compliance characteristics of a real vehicle. The accuracy of the simulation results of each vehicle model is verified through comparisons to the results of real vehicle field tests and simulation with an ordinary full multibody vehicle model. It is found that the simulation results using the proposed vehicle models are accurate, and real-time simulation is achieved on a computer with a single PowerPC 604 333 MHz processor with 1 millisecond of integration step size.
机译:提出了使用悬架复合关节进行实时动态仿真的新的车辆建模方法。得出了悬架复合节点,并用于减少模拟的计算时间,而不会降低悬架系统的运动精度。使用质量较小但具有重要运动功能的悬架部件上的无质量链节对关节进行建模,并得出悬架系统的转向节或车轴的运动学。使用关节对三种车辆建模方法进行了测试:运动转向,顺应拉杆和力驱动转向车辆模型。后两个构造为代表实际车辆的转向顺应特性。通过与实际车辆现场测试的结果进行比较,并使用普通的多体整车模型进行仿真,可以验证每种车辆模型的仿真结果的准确性。发现使用所提出的车辆模型进行的仿真结果是准确的,并且在具有单个PowerPC 604 333 MHz处理器且集成步长为1毫秒的计算机上实现了实时仿真。

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