用于高性能云计算的弹性并行系统:最新技术和未来方向

Stefan Kehrer, W. Blochinger
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引用次数: 6

摘要

随着对计算资源的按需访问、按使用付费和弹性的增加,云逐渐成为高性能计算(HPC)的有吸引力的执行环境。弹性通常被认为是最有益的云特有属性,在交互式(多层)应用程序的环境中被大量使用,而在高性能计算领域,与弹性相关的研究仍处于起步阶段。现有的并行计算理论和传统的分析评估并行系统的指标没有全面考虑弹性,即在运行时控制处理单元数量的能力。为了解决这些问题,我们引入了一个概念框架来理解并行系统背景下的弹性,定义了弹性并行系统,并讨论了运行时弹性控制和弹性并行系统事后性能评估的新度量。基于概念框架,我们对该领域的现有研究进行了深入分析,以描述最新的研究成果,并将我们的发现汇编成弹性并行系统未来研究的研究议程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elastic Parallel Systems for High Performance Cloud Computing: State-of-the-Art and Future Directions
With on-demand access to compute resources, pay-per-use, and elasticity, the cloud evolved into an attractive execution environment for High Performance Computing (HPC). Whereas elasticity, which is often referred to as the most beneficial cloud-specific property, has been heavily used in the context of interactive (multi-tier) applications, elasticity-related research in the HPC domain is still in its infancy. Existing parallel computing theory as well as traditional metrics to analytically evaluate parallel systems do not comprehensively consider elasticity, i.e., the ability to control the number of processing units at runtime. To address these issues, we introduce a conceptual framework to understand elasticity in the context of parallel systems, define the term elastic parallel system, and discuss novel metrics for both elasticity control at runtime as well as the ex-post performance evaluation of elastic parallel systems. Based on the conceptual framework, we provide an in-depth analysis of existing research in the field to describe the state-of-the-art and compile our findings into a research agenda for future research on elastic parallel systems.
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