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Case Study for Running HPC Applications in Public Clouds

机译:在公共云中运行HPC应用程序的案例研究

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Cloud computing is emerging as an alternative computing platform to bridge the gap between scientists' growing computational demands and their computing capabilities. A scientist who wants to run HPC applications can obtain massive computing resources 'in the cloud' quickly (in minutes), as opposed to days or weeks it normally takes under traditional business processes. Due to the popularity of Amazon EC2, most HPC-in-the-cloud research has been conducted using EC2 as a target platform. Previous work has not investigated how results might depend upon the cloud platform used. In this paper, we extend previous research to three public cloud computing platforms. In addition to running classical benchmarks, we also port a 'full-size' NASA climate prediction application into the cloud, and compare our results with that from dedicated HPC systems. Our results show that 1) virtualization technology, which is widely used by cloud computing, adds little performance overhead; 2) most current public clouds are not designed for running scientific applications primarily due to their poor networking capabilities. However, a cloud with moderately better network (vs. EC2) will deliver a significant performance improvement. Our observations will help to quantify the improvement of using fast networks for running HPC-in-the-cloud, and indicate a promising trend of HPC capability in future private science clouds. We also discuss techniques that will help scientists to best utilize public cloud platforms despite current deficiencies.
机译:云计算正在成为替代计算平台的桥梁,以弥合科学家不断增长的计算需求与其计算能力之间的鸿沟。想要运行HPC应用程序的科学家可以快速(在几分钟内)“在云中”获得大量的计算资源,而传统业务流程通常需要几天或几周的时间。由于Amazon EC2的普及,大多数HPC-in-the-cloud研究都是使用EC2作为目标平台进行的。先前的工作尚未调查结果如何取决于所使用的云平台。在本文中,我们将先前的研究扩展到三个公共云计算平台。除了运行经典基准测试外,我们还将“全尺寸” NASA气候预测应用程序移植到云中,并将我们的结果与专用HPC系统的结果进行比较。我们的结果表明:1)虚拟化技术已被云计算广泛使用,几乎没有增加性能开销; 2)主要是由于其较差的网络功能,因此当前大多数公共云都不适合运行科学应用程序。但是,具有适度更好网络(相对于EC2)的云将显着提高性能。我们的观察将有助于量化使用快速网络在云中运行HPC的改进,并指出未来私有科学云中HPC功能的发展趋势。我们还将讨论可以帮助科学家克服当前缺陷的最佳技术的技术。

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