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Modeling and simulation of longitudinal dynamics coupled with clutch engagement dynamics for ground vehicles

机译:纵向动力学的建模与仿真与地面车辆离合器接合动力学相结合

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During the engagement of the dry clutch in automotive transmissions, clutch judder may occur. Vehicle suspension and engine mounts couple the torsional and longitudinal models, leading to oscillations of the vehicle body that are perceived by the driver as poor driving quality. This paper presents an effective formulation for the modeling and simulation of longitudinal dynamics and powertrain torsional dynamics of the vehicle based on non-smooth dynamics of multibody systems. In doing so friction forces between wheels and the road surface are modeled along with friction torque in the clutch using Coulomb's friction law. First, bilateral constraint equations of the system are derived in Cartesian coordinates and the dynamical equations of the system are developed using the Lagrange multiplier technique. Complementary formulations are proposed to determine the state transitions from stick to slip between wheels and road surface and from the clutch. An event-driven scheme is used to represent state transition problem, which is solved as a linear complementarity problem (LCP), with Baumgarte's stabilization method applied to reduce constraint drift. Finally, the numerical results demonstrate that the modeling technique is effective in simulating the vehicle dynamics. Using this method stick-slip transitions between driving wheel and the road surface and from the clutch, as a form of clutch judder, are demonstrated to occur periodically for certain values of the parameters of input torque from engine, and static and dynamic friction characteristics of tire/ground contact patch and clutch discs.
机译:在干燥离合器在汽车传输中的接合期间,可能发生离合器闸门。车辆悬架和发动机安装耦合扭转和纵型型号,导致车身振荡,驾驶员被驾驶质量差。本文基于多体系的非平滑动力学,介绍了车辆纵向动力学和动力总成动力学的建模和仿真的有效配方。在这样做的情况下,车轮和路面之间的摩擦力在离合器中使用Coulomb的摩擦法在离合器中进行建模。首先,系统的双边约束方程在笛卡尔坐标中导出,并且使用拉格朗日乘法器技术开发系统的动态方程。提出了互补制剂以确定杆从杆和路面和离合器之间滑动的状态过渡。事件驱动方案用于表示状态转换问题,该问题被解开为线性互补问题(LCP),具有施加的Baumgarte的稳定方法来减少约束漂移。最后,数值结果表明,建模技术在模拟车辆动态方面是有效的。使用该方法在驱动轮和路面之间和离合器之间的粘滑过渡,作为离合器触控器的形式,以定期出现来自发动机的输入扭矩参数的某些值,以及静态和动态摩擦特性轮胎/接地接触贴片和离合器盘。

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