Reducing Performance Evaluation Sensitivity and Variability by Input Shaking

Dan Tsafrir, Keren Ouaknine, D. Feitelson
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引用次数: 2

Abstract

Simulations sometimes lead to observed sensitivity to configuration parameters as well as inconsistent performance results. The question is then what is the true effect and what is a coincidental artifact of the evaluation. The shaking methodology answers this by executing multiple simulations under small perturbations to the input workload, and calculating the average performance result; if the effect persists we can be more confident that it is real, whereas if it disappears it was an artifact. We present several examples where the sensitivity that appears in results based on a single evaluation is eliminated or considerably reduced by the shaking methodology. While our examples come from evaluations of scheduling algorithms for supercomputers, we believe the method has wider applicability.
通过输入抖动降低性能评估的灵敏度和可变性
模拟有时会导致观察到的对配置参数的敏感性以及不一致的性能结果。问题是,什么是真正的效果,什么是评估的偶然产物。振动方法通过在输入工作负载的小扰动下执行多次模拟并计算平均性能结果来回答这个问题;如果这种影响持续存在,我们就可以更确信它是真实的,而如果它消失了,那就是一种人工制品。我们提出了几个例子,其中在基于单一评估的结果中出现的灵敏度被震动方法消除或大大降低。虽然我们的例子来自对超级计算机调度算法的评估,但我们相信该方法具有更广泛的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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