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A STATE-TIME FORMULATION FOR MULTIBODY SYSTEMS DYNAMICS SIMULATION , PART Ⅱ: PARALLEL IMPLEMENTATION

机译:多体系系统动态模拟的状态时间制剂,第Ⅱ部分:并行实施

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This paper outlines the parallel implementation of a newly developed multibody system dynamics formulation. The methodology provides the means for the dynamic simulation to be parallelized temporally as well as spatially which will allow better exploitation of anticipated massively parallel computing resources. This will have three advantages: First, the system of equations may now be coarse grain parallelized to a far greater degree allowing an increased number of processors to be effectively utilized. Secondly, this will significantly reduce the fraction of serial operations and thus should increase speedup (reduced turn-around). Finally, the method allows temporal scale of each variable to be adjusted independently and as such offer considerable advantage for the efficient and accurate modeling and simulation ofmultiscale behaviors. These gains can be accomplished by discretizing a special form of the equations of motion in both temporal and spatial domains. Examples are provided to clarify the application of this scheme with particular attention on time domain parallelization.
机译:本文概述了新开发的多体系系统动态制定的并行实施。该方法提供了动态模拟的装置,其在时间上以及空间上并行化,这将允许更好地利用预期的大规模平行计算资源。这将有三个优点:首先,方程式现在可以是粗糙的晶粒,并行于更大的程度,允许有效地利用增加数量的处理器。其次,这将显着降低串行操作的分数,因此应该增加加速度(减少转弯)。最后,该方法允许独立调整每个变量的时间尺度,并且如此为此提供了相当优点的优势,可以实现高效且准确的模拟和仿真。这些增益可以通过在时间和空间域中离散地的特殊形式的运动方程来实现。提供了实施例以阐明该方案的应用特别注意时域并行化。

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