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The NAS Benchmark Kernels for Single and Multi-Tenant Cloud Instances with LXC/KVM

机译:具有LXC / KVM的单个和多租户云实例的NAS基准内核

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Private IaaS clouds are an attractive environment for scientific workloads and applications. It provides advantages such as almost instantaneous availability of high-performance computing in a single node as well as compute clusters, easy access for researchers, and users that do not have access to conventional supercomputers. Furthermore, a cloud infrastructure provides elasticity and scalability to ensure and manage any software dependency on the system with no third-party dependency for researchers. However, one of the biggest challenges is to avoid significant performance degradation when migrating these applications from physical nodes to a cloud environment. Also, we lack more research investigations for multi-tenant cloud instances. In this paper, our goal is to perform a comparative performance evaluation of scientific applications with single and multi-tenancy cloud instances using KVM and LXC virtualization technologies under private cloud conditions. All analyses and evaluations were carried out based on NAS Benchmark kernels to simulate different types of workloads. We applied statistic significance tests to highlight the differences. The results have shown that applications running on LXC-based cloud instances outperform KVM-based cloud instances in 93.75% of the experiments w.r.t single tenant. Regarding multi-tenant, LXC instances outperform KVM instances in 45% of the results, where the performance differences were not as significant as expected.
机译:私人IAAS云是科学工作负载和应用的有吸引力的环境。它提供了在单个节点中的高性能计算的几乎瞬时可用性等优点,以及计算群集,轻松访问研究人员,以及无法访问传统超级计算机的用户。此外,云基础架构提供弹性和可扩展性,以确保和管理具有研究人员的第三方依赖的系统的任何软件依赖性。然而,最大的挑战之一是在将这些应用程序从物理节点迁移到云环境时,避免了显着的性能下降。此外,我们对多租户云实例缺乏更多的研究调查。在本文中,我们的目标是在私有云条件下使用KVM和LXC虚拟化技术进行单一和多租户云实例的科学应用的比较绩效评估。所有分析和评估都是基于NAS基准内核进行的,以模拟不同类型的工作负载。我们应用统计意义测试以突出差异。结果表明,在基于LXC的云实例上运行的应用优于93.75%的基于KVM的云实例W.R.T单租户。关于多租户,LXC实例在45%的结果中优于kVM实例,其中性能差异与预期的那么重要。

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