Assessment of variable step-size integration of multibody systems

M. Ruggiu, F. González
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Abstract

When performing the numerical integration of multibody systems (MBS) dynamics, the analyst can choose from a wide variety of methods and implementations. Selecting the most appropriate option for a particular application is not a straightforward task; as a consequence, several benchmark examples have been formulated by the MBS research community with the intent to assess the accuracy and performance of different solution methods when applied to certain kinds of mechanical problems. This paper introduces a variation of the slider-crank mechanism, already employed as benchmark problem in the MBS literature, intended to evaluate the performance of variable-step MBS algorithms. Three cases, featuring singular configurations and variable-frequency external actions, were defined. The example is used to illustrate some necessary elements in the definition of a benchmark problem and in the process of comparing different solution methods, as well as difficulties that can arise during this task. The proposed example was used to evaluate the behaviour of a variable-step index-3 augmented Lagrangian algorithm with velocity and acceleration projections, as well as other well-known solution methods.
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多体系统变步长集成的评估
当执行多体系统(MBS)动力学的数值积分时,分析人员可以从多种方法和实现中进行选择。为特定应用程序选择最合适的选项并不是一项简单的任务;因此,MBS研究界制定了几个基准示例,目的是评估应用于某些机械问题时不同解决方法的准确性和性能。本文介绍了一种已在MBS文献中作为基准问题的滑块-曲柄机构的变体,旨在评估变步长MBS算法的性能。定义了三种具有奇异结构和变频外部作用的情况。该示例用于说明基准问题的定义和比较不同解决方案方法过程中的一些必要元素,以及在此任务期间可能出现的困难。该实例用于评估具有速度和加速度投影的变步长指数-3增广拉格朗日算法的行为,以及其他已知的求解方法。
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