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Enabling Privacy in a Distributed Game-Theoretical Scheduling System for Domestic Appliances

机译:在家用电器的分布式游戏理论调度系统中启用隐私

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摘要

Demand side management (DSM) makes it possible to adjust the load experienced by the power grid while reducing the consumers' bill. Game-theoretic DSM is an appealing decentralized approach for collaboratively scheduling the usage of domestic electrical appliances within a set of households while meeting the users' preferences about the usage time. The drawback of distributed DSM protocols is that they require each user to communicate his/her own energy consumption patterns, which may leak sensitive information regarding private habits. This paper proposes a distributed privacy-friendly DSM system that preserves users' privacy by integrating data aggregation and perturbation techniques: users decide their schedule according to aggregated consumption measurements perturbed by means of additive white Gaussian noise. We evaluate the noise power and the number of users required to achieve a given privacy level, quantified by means of the increase of the information entropy of the aggregated energy consumption pattern. The performance of our proposed DSM system is compared to the one of a benchmark system that does not support privacy preservation in terms of total bill, peak demand, and convergence time. Results show that privacy can be improved at the cost of increasing the peak demand and the number of game iterations, whereas the total bill is only marginally incremented.
机译:需求方管理(DSM)使得可以调整电网所承受的负载,同时减少用户的账单。博弈论DSM是一种吸引人的分散方法,用于在家庭中满足用户对使用时间的偏爱的情况下,共同安排一组家庭中家用电器的使用时间。分布式DSM协议的缺点是它们要求每个用户交流自己的能耗模式,这可能会泄漏有关私人习惯的敏感信息。本文提出了一种分布式隐私友好型DSM系统,该系统通过集成数据聚合和微扰技术来保护用户的隐私:用户根据加性高斯白噪声所扰动的聚合消耗度量来决定其时间表。我们评估噪声功率和达到给定隐私级别所需的用户数量,并通过增加总能耗模式的信息熵来对其进行量化。我们将提议的DSM系统的性能与基准系统之一进行比较,该基准系统不支持在总账单,高峰需求和收敛时间方面保护隐私。结果表明,可以通过增加峰值需求和增加游戏迭代次数来改善隐私,而总账单仅略微增加。

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