A new metric for robustness with application to job scheduling

D. England, J. Weissman, Jayashree Sadagopan
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引用次数: 43

Abstract

Scheduling strategies for parallel and distributed computing have mostly been oriented toward performance, while striving to achieve some notion of fairness. With the increase in size, complexity, and heterogeneity of today's computing environments, we argue that, in addition to performance metrics, scheduling algorithms should be designed for robustness. That is, they should have the ability to maintain performance under a wide variety of operating conditions. Although robustness is easy to define, there are no widely used metrics for this property. To this end, we present a methodology for characterizing and measuring the robustness of a system to a specific disturbance. The methodology is easily applied to many types of computing systems and it does not require sophisticated mathematical models. To illustrate its use, we show three applications of our technique to job scheduling; one supporting a previous result with respect to backfilling, one examining overload control in a streaming video server, and one comparing two different scheduling strategies for a distributed network service. The last example also demonstrates how consideration of robustness leads to better system design as we were able to devise a new and effective scheduling heuristic.
应用于作业调度的鲁棒性新度量
并行和分布式计算的调度策略主要是面向性能的,同时努力实现一些公平的概念。随着当今计算环境的规模、复杂性和异质性的增加,我们认为,除了性能指标外,调度算法还应该设计为鲁棒性。也就是说,它们应该有能力在各种操作条件下保持性能。虽然鲁棒性很容易定义,但对于这一属性没有广泛使用的度量。为此,我们提出了一种表征和测量系统对特定干扰的鲁棒性的方法。该方法很容易应用于许多类型的计算系统,并且不需要复杂的数学模型。为了说明它的用途,我们展示了我们的技术在作业调度中的三个应用;一个支持之前关于回填的结果,一个检查流视频服务器中的过载控制,还有一个比较分布式网络服务的两种不同调度策略。最后一个示例还演示了考虑健壮性如何导致更好的系统设计,因为我们能够设计一个新的有效的调度启发式。
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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