Balancing Power Systems With Datacenters Using a Virtual Interconnector

Conor Kelly, J. Ging, A. Kansal, M. Walsh
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引用次数: 2

Abstract

Balancing electricity supply and demand is a complex task. Renewable energy sources are often intermittent, while electrical loads vary throughout the day. This can result in an abundant supply that suppresses spot prices in one region, while another region simultaneously experiences tight supply margins and price spikes. Connecting these two regions through electrical interconnectors would enable greater utilization of renewable energy, but this can be expensive and is unfeasible for distant regions, such as between continents. However, datacenters are becoming ubiquitous around the world and are linked through fiber connections. This paper proposes a virtual interconnector (VIC) scheme using fiber to dynamically move energy demand, in the form of computation, to datacenters in other market regions with surplus low cost and renewable energy. This increases the global renewable penetration without requiring expensive grid interconnections. The associated benefits for the datacenter operator, the electricity grid controller, consumers, and the environment are discussed.
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使用虚拟互连器平衡电力系统和数据中心
平衡电力供需是一项复杂的任务。可再生能源通常是间歇性的,而电力负荷整天都在变化。这可能导致供应充足,压低了一个地区的现货价格,而另一个地区同时经历供应紧张和价格飙升。通过电力互连器将这两个地区连接起来可以更好地利用可再生能源,但这可能是昂贵的,并且对于遥远的地区,例如大陆之间,是不可行的。然而,数据中心在世界各地变得无处不在,并通过光纤连接。本文提出了一种利用光纤将能源需求以计算的形式动态移动到具有剩余低成本和可再生能源的其他市场区域的数据中心的虚拟互联(VIC)方案。这增加了全球可再生能源的渗透率,而不需要昂贵的电网连接。讨论了数据中心运营商、电网控制器、消费者和环境的相关好处。
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