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Eco-Aware Online Power Management and Load Scheduling for Green Cloud Datacenters

机译:绿云数据中心的生态意识在线电源管理和负载调度

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Many of today's cloud datacenters are powered by electricity generated from brown energy (e.g., fuel fossil and oil), which directly translates into severe harm to the environment. To reduce the carbon footprint and the operating cost of datacenters, there is a clear trend to migrate to green datacenters, which are entirely (or partially) powered by renewable energy. However, given a portfolio with multiple off- and on-site power supplies (such as power grid, renewables, and batteries), it is challenging for datacenter operators to conduct efficient power management and thus meet the highly dynamic user demand. In this paper, we proposed an online algorithm, which is called EcoPower, to perform eco-aware power management and load scheduling jointly for geographically distributed cloud datacenters. Our objective is to minimize the time-average eco-aware power cost of cloud datacenters while still ensuring the quality-of-experience (QoE) constraint of user requests. To this end, we formulated the problem into a constrained stochastic optimization problem and apply the Lyapunov optimization theory to design an online control algorithm, which approaches the optimality with explicitly provable upper bounds. We also conducted extensive trace-driven simulations, and our results show that our proposed EcoPower algorithm can achieve a good balance between power cost savings, environment protection, and the user QoE, with the eco-aware power cost being cut down by over 20%. We found that wind dominant, solar complementary is a better strategy for cloud datacenters to integrate renewables into their power supply.
机译:当今许多云数据中心都由褐色能源(例如燃料化石和石油)产生的电力供电,这直接转化为对环境的严重危害。为了减少数据中心的碳足迹和运营成本,有一个明显的趋势是迁移到完全(或部分)由可再生能源供电的绿色数据中心。但是,考虑到具有多个异地和现场电源(例如,电网,可再生能源和电池)的产品组合,数据中心运营商进行有效的电源管理并因此满足高度动态的用户需求是一项挑战。在本文中,我们提出了一种称为EcoPower的在线算法,用于对地理分布的云数据中心共同执行生态感知的电源管理和负载调度。我们的目标是最大程度地减少云数据中心的平均时间平均生态感知功率成本,同时仍确保用户请求的体验质量(QoE)约束。为此,我们将该问题公式化为约束随机优化问题,并应用Lyapunov优化理论设计了一种在线控制算法,该算法以明确可证明的上限接近最优性。我们还进行了广泛的跟踪驱动模拟,结果表明,我们提出的EcoPower算法可以在节省电力成本,环境保护和用户QoE之间实现良好的平衡,并且将生态意识的电力成本降低了20%以上。我们发现,风能优势,太阳能互补是云数据中心将可再生能源集成到其电源中的更好策略。

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