Multi-tier energy buffering management for IDCs with heterogeneous energy storage devices

Z. Abbasi, Madhurima Pore, Ayan Banerjee, S. Gupta
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引用次数: 1

Abstract

Energy buffering, has been proposed to store renewable energy and low cost electricity in Energy Storage Devices (ESDs) and use it judiciously to reduce electricity bill in Internet data centers. Recent research have considered long term variation in electricity price, renewable power and workload and have shown the efficiency of energy buffering in reducing electricity bill. However, these aspects of data centers exhibit both long and short term variation. Further, there is inherent heterogeneity in ESD physical characteristics (e.g., charging and discharging rates). We hypothesize that a multi-tier energy buffering management can leverage the heterogeneity in ESD characteristics and better optimize utilization of renewable energy and low-cost power in presence of both short and long term variabilities in a data center. This paper proposes an analytical study of multi-tier workload and energy buffering management technique that frames each tier as an optimization problem and solves them in an online and proactive way using Receding Horizon Control (RHC). Our study shows that multi-tier energy buffering management increases the utilization of the renewables by upto two times compared to one-tier management.
异构储能idc的多层能量缓冲管理
能源缓冲是一种将可再生能源和低成本电力存储在储能设备(ESDs)中,并明智地使用它来减少互联网数据中心的电费的方法。最近的研究考虑了电价、可再生能源和工作量的长期变化,并显示了能源缓冲在减少电费方面的效率。然而,数据中心的这些方面表现出长期和短期的变化。此外,ESD物理特性(例如,充电和放电速率)存在固有的非均匀性。我们假设,多层能量缓冲管理可以利用ESD特性的异质性,在数据中心存在短期和长期变化的情况下,更好地优化可再生能源和低成本电力的利用。本文提出了一种多层负载和能量缓冲管理技术的分析研究,该技术将每一层构建为一个优化问题,并使用后退地平线控制(RHC)以在线和主动的方式解决它们。我们的研究表明,与单层管理相比,多层能源缓冲管理可将可再生能源的利用率提高两倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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