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Improved Energy-Efficiency in Cloud Datacenters with Interference-Aware Virtual Machine Placement

机译:利用干扰感知虚拟机放置提高云数据中心的能效

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Virtualization is one of the main technologies used for improving resource efficiency in datacenters; it allows the deployment of co-existing computing environments over the same hardware infrastructure. However, the co-existing of environments - along with management inefficiencies - often creates scenarios of high-competition for resources between running workloads, leading to performance degradation. This phenomenon is known as Performance Interference, and introduces a non-negligible overhead that affects both a datacenter's Quality of Service and its energy-efficiency. This paper introduces a novel approach to workload allocation that improves energy-efficiency in Cloud datacenters by taking into account their workload heterogeneity. We analyze the impact of performance interference on energy-efficiency using workload characteristics identified from a real Cloud environment, and develop a model that implements various decision-making techniques intelligently to select the best workload host according to its internal interference level. Our experimental results show reductions in interference by 27.5% and increased energy- efficiency up to 15% in contrast to current mechanisms for workload allocation.
机译:虚拟化是用于提高数据中心中资源效率的主要技术之一;它允许在相同的硬件基础架构上部署共存的计算环境。然而,共存环境 - 以及管理效率低下 - 通常会在运行工作量之间创造高竞争的方案,从而导致性能下降。这种现象称为性能干扰,并引入了不可忽略的开销,其影响数据中心的服务质量及其能效。本文介绍了一种新颖的工作负载分配方法,通过考虑工作负载异质性来提高云数据中心的能量效率。我们使用真实云环境中识别的工作负载特性分析性能干扰对能效的影响,并开发一个模型,实现智能地实现各种决策技术,以根据其内部干扰水平选择最佳的工作负载主机。我们的实验结果表明,与当前工作负载分配的电流机制相比,我们的实验结果表明减少27.5%,增强的能量效率高达15%。

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