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Overlay energy circle formation for cloud data centers with renewable energy futures contracts

机译:具有可再生能源期货合约的云数据中心的能源圈叠加

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Cloud data centers are significant players in the electricity market due to their high energy consumption. It is highly desired to operate cloud data centers on only renewable energy such as solar, wind or tidal to reduce their cost and emissions. In the literature, utilization of renewable energy is maximized through workload migration towards data centers that are forecasted to have surplus renewable energy which is also known as “follow the sun chase the wind” approach. In practice, it is rather difficult and unrealistic to shift workloads based on instantaneous output of renewable generation. Generally forecast tools are used which can only provide a rough estimate of the generation capacity. In this paper, we use a more realistic approach and propose an overlay architecture to form energy circles of cloud data centers depending on their load and renewable energy futures contracts. A futures contract is an electricity purchase agreement between the data center operator and the renewable energy generator to purchase electricity in the future with today's price. Futures contracts are electricity market mechanisms that reduce the cost related risks for both parties and are seen as tools to scale-up renewable generation. On the other hand, fluctuating loads of cloud data centers may leave some contract capacity left unused or exceed the capacity. In this case, electricity will be purchased at current market price from the renewable generator or the utility grid where in both cases the electricity bill will increase. Hence, a mechanism to utilize the unused capacity in the contracts of peer data centers and shifting workloads towards available capacity can reduce bills as well as increase the utilization of renewable energy. Our proposed energy circles approach aims to group cloud data centers to achieve those goals.
机译:由于云数据中心的高能耗,因此它们是电力市场中的重要参与者。迫切希望仅使用可再生能源(例如太阳能,风能或潮汐能)来运行云数据中心,以降低成本和排放。在文献中,通过将工作负载迁移到预计具有多余可再生能源的数据中心,可以最大程度地利用可再生能源,这也被称为“追风追风”方法。在实践中,根据可再生能源的瞬时输出来转移工作量是非常困难且不切实际的。通常使用预测工具,这些工具只能粗略估计发电量。在本文中,我们使用一种更现实的方法,并提出了一种覆盖架构,以根据云数据中心的负载和可再生能源期货合约来形成它们的能量环。期货合约是数据中心运营商与可再生能源生产商之间的电力购买协议,用于以今天的价格在将来购买电力。期货合约是电力市场机制,可降低双方成本相关的风险,并被视为扩大可再生能源发电的工具。另一方面,云数据中心负载的波动可能会使某些合同容量未使用或超过该容量。在这种情况下,将从可再生发电机或公用电网以当前市场价格购买电,在这两种情况下,电费都会增加。因此,一种利用对等数据中心合同中未使用的容量并将工作负载转移到可用容量的机制可以减少账单并提高可再生能源的利用率。我们提出的能源圈方法旨在将云数据中心分组以实现这些目标。

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