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ExPO: Exponential-Based Privacy Preserving Online Auction for Electric Vehicles Demand Response in Microgrid

机译:ExPO:微电网中电动汽车需求响应的基于指数的隐私保护在线拍卖

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In this paper, we address the problem of demand response in microgrids (MGs) through scheduling Electric Vehicles (EVs) charging at swap stations. Swap station has attracted growing attentions due to properties of fast charging and peakload shifting. Thus how to schedule EV charging reasonable at swap station requires careful designing. A reasonable charging policy should i) ensure batteries in swap station to be allocated to EV who really value them, ii) protect the EV owners private information, i.e. valuations from being inferred by the adversary. To tackle these issues, we present an Exponential-based Privacy Preserving Online Auction scheme (ExPO), which enables energy trading among EVs and batteries in swap stations. Particularly, EVs and batteries act as buyers and sellers, respectively, while the auctioneer is responsible for maximizing the market social welfare by matching buyers and sellers. In our research, we conduct a theoretical analysis and demonstrate that our online auction scheme achieves the properties of individual rationality, incentive compatibility and ε-differential privacy. The result of extensive performance evaluation shows that the proposed auction scheme not only achieves good performance with respect to social welfare, privacy leakage, but also can help the power system shift peak load.
机译:在本文中,我们通过安排交换站的电动汽车(EV)充电来解决微电网(MG)中的需求响应问题。交换站由于快速充电和峰值负载转移的特性而引起了越来越多的关注。因此,如何在交换站安排合理的EV充电需要仔细设计。合理的充电政策应:i)确保将交换站中的电池分配给真正重视其价值的电动汽车,ii)保护电动汽车所有者的私人信息,即防止对手推论其估值。为了解决这些问题,我们提出了一种基于指数的隐私保护在线拍卖方案(ExPO),该方案可以在交换站中的电动汽车和电池之间进行能源交易。特别是,电动汽车和电池分别充当买方和卖方,而拍卖师则负责通过匹配买方和卖方来最大化市场社会福利。在我们的研究中,我们进行了理论分析,并证明了我们的在线拍卖方案具有个人理性,激励相容性和ε差异隐私的特性。广泛的性能评估结果表明,所提出的拍卖方案不仅在社会福利,隐私泄漏方面取得了良好的性能,而且还可以帮助电力系统转移峰值负荷。

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