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Clock Auction Inspired Privacy Preserving Emergency Demand Response in Colocation Data Centers

机译:时钟拍卖启发了隐私,保留了扑发数据中心的紧急需求响应

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Data centers are key participants in emergency demand response (EDR), where the grid coordinates large electricity consumers for reducing their consumption during emergency situations to prevent major economic losses. While existing literature concentrates on owner-operated data centers (e.g., Google), this work studies EDR in multi-tenant colocation data centers (e.g., Equinix) where servers are owned and managed by individual tenants and which are better targets of EDR. Existing EDR mechanisms incentivize tenants energy reduction. Such designs can either be gamed by strategic tenants or untrustworthy colocation operators for illegal gains. These serious privacy concerns stand as barrier preventing the tenants' participation in EDR. This paper addresses such concerns by proposing a privacy-preserving and strategy-proof mechanism using the descending clock auction. Privacy is protected by implementing homomorphic encryption for aggregation through the clock auction, where operator can only know the aggregate of the tenants' values or bids but not their individual private values or confidential information submitted to meet the EDR. We evaluate the privacy and performance of this scheme by formulating descending clock auction, in which the amount of energy/price the tenants are willing to reduce for a given price/energy to meet EDR is protected.
机译:数据中心是紧急需求响应(EDR)的关键参与者,其中网格协调大型电力消费者,以降低紧急情况下的消费,以防止主要经济损失。虽然现有的文献专注于所有者操作的数据中心(例如,谷歌),但这项工作研究了在多租户的扑发数据中心(例如,EquInix)中的EDR,服务器由个人租户拥有和管理,这是EDR的更好目标。现有的EDR机制激励租户能量减少。这种设计可以由战略租户或不值得信任的派对运营商代表非法收益。这些严肃的隐私问题是阻碍租户参与EDR的障碍。本文通过提出使用下行时钟拍卖提出隐私保留和战略验证机制来解决这些问题。通过时钟拍卖实现均匀加密来保护隐私,运营商只能知道租户价值的总数或出价,而不是他们的个人私人价值观或提交的机密信息以满足EDR。我们通过制定下降时钟拍卖来评估该方案的隐私和表现,其中租户愿意减少给定价格/能源以满足EDR的能源/价格的金额受到保护。

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