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Real-time capable vehicle-trailer coupling by algorithms for differential-algebraic equations

机译:通过微分-代数方程组算法实现实时的车辆-挂车耦合

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摘要

The real-time simulation of vehicle trains requires an accurate and numerically feasible representation of the vehicle-trailer coupling. Although the equations of motion for the chassis instances can be reduced to systems of ordinary differential equations, additional constraints on the relative motion of vehicle and trailer are introduced when considering the hitch. In this article, we present a strategy for the simulation of vehicle-trailer combinations, where the algebraic constraints of the coupling are treated explicitly. Although this approach allows exact modeling of the respective joint geometry and realistic calculation of the coupling forces, a suitable numerical algorithm is required in order to solve the resulting differential-algebraic system of index 3 in real-time. The implementation in a commercial vehicle dynamics program is discussed and real-time simulation results are shown, which prove its feasibility for different coupling joints and demanding driving maneuvers.
机译:车辆列车的实时仿真需要车辆挂车联接的准确和数值上可行的表示。尽管底盘实例的运动方程可以简化为常微分方程系统,但在考虑到挂钩时会引入对车辆和拖车相对运动的附加约束。在本文中,我们提出了一种模拟车辆-拖车组合的策略,其中明确考虑了联轴器的代数约束。尽管此方法允许对各个关节几何形状进行精确建模并实际计算耦合力,但仍需要一种合适的数值算法来实时解决由此产生的指数3的微分代数系统。讨论了商用车辆动力学程序中的实现,并显示了实时仿真结果,证明了其适用于不同的联轴节和要求苛刻的驾驶操作的可行性。

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