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An Adaptive Grid Frequency Support Mechanism for Energy Management in Cloud Data Centers

机译:云数据中心能源管理的自适应网格频率支持机制

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Grid frequency support is one of the most challenging problems, since minor variations in it may lead to huge financial losses. This problem becomes even more challenging with the horizontal and vertical expansion of modern cloud data centers (DCs). In the past, several efforts have been made to manage frequency deviations using flywheels, commercial buildings, electric vehicles, and renewable energy resources. However, these are not adequate due to their complex operations. To fill these gaps, in this paper, we propose the usage of cloud DCs and uninterruptible power supply (UPS) units for the effective frequency regulation. This is achieved by designing a 2-layer hierarchical control scheme for optimal segregation of the regulation signals amongst the DCs and UPS batteries. The proposed scheme determines the scheduling policy for jobs at DCs; along with the charging and discharging cycles of the UPS batteries. The job scheduling is carried out with respect to MapReduce tasks in accordance with the regulation signals with minimal service level adherence violations. Additionally, the sustainability of DCs is also supported through active participation of UPSes during peak hours. The overall frequency support problem in the considered setup involves multiple objectives under multiconstraint environment. Thus, it has been divided in two subproblems, which are addressed individually using either integer linear programming or mixed integer linear programming. In a nutshell, the proposed scheme serves dual purposes, i.e., manages frequency fluctuations and sustains DCs during peak hours. It has been validated using data traces taken from OpenCloud Hadoop cluster and Pennsylvania New Jersey Maryland. The results obtained prove the effectiveness of the proposed scheme for frequency support and DC's sustainability.
机译:网格频率支持是最具挑战性的问题之一,因为它可能导致巨大的经济损失。与现代云数据中心(DCS)的水平和垂直扩展变得更具挑战性。过去,已经使用了使用飞轮,商业建筑,电动车辆和可再生能源来管理频率偏差的努力。然而,由于他们的复杂操作,这些并不充足。为了填补这些差距,在本文中,我们提出了用于有效频率调节的云DC和不间断电源(UPS)单元的使用。这是通过设计2层分层控制方案来实现的,以便在DC和UPS电池中的调节信号的最佳隔离。拟议的计划确定了DCS上工作的调度政策;以及UPS电池的充电和放电循环。根据具有最小服务级别遵守违规的调节信号,对MapReduce任务执行作业调度。此外,还通过高峰时段积极参与UPSES的积极参与,支持DCS的可持续性。所考虑的设置中的总频率支持问题涉及在多组织环境下的多个目标。因此,它已经分为两个子问题,其使用整数线性编程或混合整数线性编程单独寻址。在简而言之,所提出的方案提供了双目的,即管理频率波动并在高峰时段维持DC。它已经通过从OpenCloud Hadoop集群和宾夕法尼亚州新泽西马里兰州验证的数据痕迹进行了验证。获得的结果证明了频率支持和直流可持续性方案的有效性。

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