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Data center holistic demand response algorithm to smooth microgrid tie-line power fluctuation

机译:数据中心整体需求响应算法,可平滑微电网联络线功率波动

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摘要

With the rapid development of cloud computing, artificial intelligence technologies and big data applications, data centers have become widely deployed. High density IT equipment in data centers consumes a lot of electrical power, and makes data center a hungry monster of energy consumption. To solve this problem, renewable energy is increasingly integrated into data center power provisioning systems. Compared to the traditional power supply methods, renewable energy has its unique characteristics, such as intermittency and randomness. When renewable energy supplies power to the data center industrial park, this kind of power supply not only has negative effects on the normal operation of precision equipment, such as CPU/GPU chips and hard disk, in data center, but it would also impact the stability of the utility power grids operation. To solve this problem, this paper presents a novel tie-line power fluctuation smoothing algorithm with consideration of data center's holistic demand response. The contributions of this paper are: (1) overcoming the limitations of treating IT load as uncontrollable workload in the traditional demand response research, we design a data center resource scheduling model to realize IT load demand response controllability; (2) two novel mechanisms are proposed: (i) the server cluster workload scheduling method with time shift mechanism, and (ii) the data center UPS (Uninterruptible Power Supply) energy storage dynamic response mechanism. (3) Combining these two mechanisms as holistic demand response of data center, we present a tie-line power fluctuation smoothing algorithm to improve power supply reliability, which is beneficial to both the high density and precision IT equipment in the data center and the utility power grid. In the experiments, the results show that the new algorithm can effectively regulate the tie-line power fluctuations under different server cluster utilization ranges and scenarios of large-scale penetration of distributed renewable energy scenarios. The new algorithm is hence able to contribute beneficially to the reliability and stability of intelligent industrial park micro-grid and utility power grids.
机译:随着云计算,人工智能技术和大数据应用的迅速发展,数据中心已得到广泛部署。数据中心中的高密度IT设备消耗大量电能,并使数据中心成为能源消耗的饥饿怪兽。为了解决这个问题,可再生能源越来越多地集成到数据中心电源供应系统中。与传统的供电方式相比,可再生能源具有间歇性和随机性等独特特征。当可再生能源为数据中心工业园区供电时,这种电源不仅会对数据中心内CPU / GPU芯片和硬盘等精密设备的正常运行产生负面影响,而且还会影响到公用电网运行的稳定性。为了解决这个问题,本文提出了一种新的考虑数据中心整体需求响应的联络线功率波动平滑算法。本文的主要工作是:(1)克服了传统需求响应研究中将IT负载视为不可控制的工作量的局限性,设计了数据中心资源调度模型来实现IT负载需求响应的可控性。 (2)提出了两种新颖的机制:(i)具有时移机制的服务器集群工作负载调度方法,以及(ii)数据中心UPS(不间断电源)能量存储动态响应机制。 (3)结合这两种机制作为数据中心的整体需求响应,我们提出了一条联络线电源波动平滑算法来提高电源可靠性,这有利于数据中心的高密度和高精度IT设备以及公用事业。电网。在实验中,结果表明,该新算法可以有效调节不同服务器集群使用范围和分布式可再生能源大规模渗透情景下的联络线功率波动。因此,新算法能够为智能工业园区微电网和公用电网的可靠性和稳定性做出有益贡献。

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