基于dcom的机车与轨道耦合动力学仿真研究

Di Guofu
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引用次数: 0

摘要

机车-轨道耦合动力学仿真已经取得了很好的成果(翟文明,1997;G.F. Ding, 2003)。然而,如何在可视化和动态计算相结合的情况下提高仿真速度仍然是一个有待解决的问题。本文在已有成功的基础上,提出了一种分布式COM技术,用以改变目前慢速仿真的现状。本文首先对机车轨道动力学系统进行建模,讨论了求解公式,并给出了系统的可视化效果,然后分析了主要集成求解算法的特点,这也是采用DCOM方法的原因。其次,将求解方程分解为若干独立模块,以COM的形式分布在不同的求解机上,构建分布式并行计算环境,有效降低了主机的计算负荷,提高了计算速度,为实现机车虚拟动力试验等实时仿真奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of DCOM-based simulation applied in locomotive & track coupling dynamics
Locomotive-track coupling dynamical simulation has made good achievements (W.M. Zhai, 1997; G.F. Ding, 2003). However, a problem, how to improve the simulating speed when visualization and dynamical computation are considered at the same time, is still not overcome. Here, based on existing success, we present a distributed COM technology, which is used to change the status of the present slow speed simulation. Here, at first, the locomotive-track dynamics system is modeled, a resolving formula is discussed, and visualization of the system is given, then the characteristic of the main integration resolving algorithm is analyzed, which is the reason of actuating the DCOM method. Secondly, we divide these resolving equations into several separated module, which is distributed in different resolving machine as a COM, and construct a distributed parallel computing environment, this method effectively reduces the computing load of the main computer and the computing speed is improved, which is the basement of real-time simulation such as virtual dynamical test of locomotive.
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