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Performance evaluation of N-processor Time Warp using stochastic activity networks

机译:使用随机活动网络的N处理器时间扭曲的性能评估

摘要

The speedup obtainable with Time Warp parallel discrete-event simulation varies greatly with the characteristics of the simulation and the Time Warp implementation. Analytic studies have been done to determine the expected speedup of Time Warp, but these studies have been limited to bound analysis or analysis considering a few overheads with the others assumed negligible. The models used in these studies have often been constructed directly in terms of a Markov process, making the construction process difficult. This thesis uses stochastic activity networks to construct a model of Time Warp at a higher level, enabling the construction of a more detailed underlying Markov process. The result is an analytic model for N-processor Time Warp that considers the combined effects of limited optimism, cascaded rollback, communication cost, and rollback cost. Given these effects, solutions for performance variables such as speedup, fraction of time blocked, and channel utilization are obtained.
机译:通过时间扭曲并行离散事件仿真可获得的提速随仿真特性和时间扭曲实现而变化很大。已经进行了分析研究来确定预期的时间扭曲加速,但是这些研究仅限于边界分析或考虑到一些间接费用而其他费用可以忽略不计的分析。这些研究中使用的模型通常是根据马尔可夫过程直接构建的,这使得构建过程很困难。本文使用随机活动网络在更高层次上构建时间扭曲模型,从而能够构建更详细的基础马尔可夫过程。结果是一个N处理器时间扭曲的分析模型,其中考虑了有限的乐观度,级联的回滚,通信成本和回滚成本的综合影响。有了这些效果,就可以获得性能变量的解决方案,例如加速,阻塞时间和信道利用率。

著录项

  • 作者

    McLeod Bruce Daniel 1968-;

  • 作者单位
  • 年度 1993
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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