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Vehicle Handling Dynamics with Uncertainty Using Chebyshev Interval Method

机译:使用Chebyshev interval方法具有不确定性的车辆处理动态

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Vehicle systems often operate with some degree of uncertainty. This study applies the Chebyshev interval method to model vehicle dynamic systems operating in the presence of interval parameters. A full vehicle model is used as the numerical model and the methodology is illustrated on the steering wheel angle pulse input test. In the numerical simulation, suspension stiffness coefficients and suspension damping coefficients are chosen as interval parameters and lateral acceleration and yaw rate are chosen to capture vehicle dynamic characteristics. System responses in time domain are validated against Monte Carlo simulations and against the scanning approach. Results indicate that the Chebyshev interval method is more efficient than Monte Carlo simulations. The results of scanning method are similar to the ones obtained with the Chebyshev interval method. The overall conclusion is that the Chebyshev interval method is a powerful approach for the simulation of multibody dynamic systems with interval parameters.
机译:车辆系统经常以一定程度的不确定性运行。本研究适用Chebyshev interval方法来模拟在存在间隔参数的情况下运行的车辆动态系统。使用全车型模型用作数值模型,并且在方向盘角脉冲输入测试上示出了方法。在数值模拟中,选择悬架刚度系数和悬浮阻尼系数作为间隔参数,并且选择横向加速度和横摆率以捕获车辆动态特性。时间域中的系统响应针对蒙特卡罗模拟和扫描方法验证。结果表明Chebyshev间隔方法比蒙特卡罗模拟更有效。扫描方法的结果类似于用Chebyshev间隔方法获得的结果。总之,结论是Chebyshev interval方法是具有间隔参数的多体动态系统模拟的强大方法。

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