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Renewable-aware geographical load balancing of web applications for sustainable data centers

机译:Web应用程序的可感知更新的地理负载平衡,以实现可持续数据中心

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The ever-increasing demand for web applications deployed across multiple data centers results in large electricity costs for service providers and significant impact on the environment. This has motivated service providers to move towards more sustainable data centers powered by renewable or green sources of energy, such as solar or wind. However, efficient utilization of green energy to service web applications is a challenging problem due to intermittency and unpredictability of both application workload and renewable energy availability. One possible solution to reduce cost and increase renewable energy utilization is to exploit the spatio-temporal variations in on-site power and grid power prices by balancing the load among multiple data centers geographically distributed. In this paper, we propose a framework for reactive load balancing of web application requests among Geo-distributed sustainable data centers based on the availability of renewable energy sources on each site. A system prototype is developed, its underlying design and algorithms are described, and experiments are conducted with it using real infrastructure (Grid'5000 in France) and workload traces (real traffic to English Wikipedia). The experimental results demonstrate that our approach can reduce cost and brown energy usage with efficient utilization of green energy and without a priori knowledge of future workload, availability of renewable energy, and grid electricity prices.
机译:对跨多个数据中心部署的Web应用程序的不断增长的需求导致服务提供商的电费巨大,并对环境产生重大影响。这促使服务提供商转向由可再生或绿色能源(例如太阳能或风能)驱动的更具可持续性的数据中心。但是,由于应用程序工作负载和可再生能源可用性的间歇性和不可预测性,有效利用绿色能源为Web应用程序提供服务是一个具有挑战性的问题。降低成本并提高可再生能源利用率的一种可能解决方案是,通过平衡地理上分布的多个数据中心之间的负载来利用现场电价和电网电价的时空变化。在本文中,我们提出了一个框架,用于根据每个站点上可再生能源的可用性,在地理分布的可持续数据中心之间平衡Web应用程序请求的负载。开发了系统原型,描述了其基本设计和算法,并使用了实际的基础架构(法国的Grid'5000)和工作负载跟踪(到英语维基百科的实际流量)进行了实验。实验结果表明,我们的方法可以有效利用绿色能源,并且无需事先了解未来的工作量,可再生能源的可用性和电网电价,从而可以降低成本和减少棕色能源的使用。

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