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Privacy-Assured Aggregation Protocol for Smart Metering: A Proactive Fault-Tolerant Approach

机译:用于智能电表的确保隐私的聚合协议:一种主动的容错方法

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摘要

Smart meters are integral to demand response in emerging smart grids, by reporting the electricity consumption of users to serve application needs. But reporting real-time usage information for individual households raises privacy concerns. Existing techniques to guarantee differential privacy (DP) of smart meter users either are not fault tolerant or achieve (possibly partial) fault tolerance at high communication overheads. In this paper, we propose a fault-tolerant protocol for smart metering that can handle general communication failures while ensuring DP with significantly improved efficiency and lower errors compared with the state of the art. Our protocol handles fail-stop faults proactively by using a novel design of future ciphertexts, and distributes trust among the smart meters by sharing secret keys among them. We prove the DP properties of our protocol and analyze its advantages in fault tolerance, accuracy, and communication efficiency relative to competing techniques. We illustrate our analysis by simulations driven by real-world traces of electricity consumption.
机译:智能电表通过报告用户的用电量来满足应用需求,是新兴智能电网中需求响应不可或缺的一部分。但是,报告单个家庭的实时使用信息会引起隐私问题。现有技术可确保智能电表用户的差分隐私(DP)不容错,或在高通信开销下实现(可能是部分)容错。在本文中,我们提出了一种用于智能计量的容错协议,该协议可以处理一般的通信故障,同时确保与现有技术相比,DP具有显着提高的效率和更低的错误率。我们的协议通过使用未来密文的新颖设计来主动处理故障停止故障,并通过在智能电表之间共享秘密密钥在智能电表之间分配信任。我们证明了该协议的DP属性,并分析了其相对于竞争技术在容错性,准确性和通信效率方面的优势。我们通过模拟现实生活中的电力消耗轨迹来说明我们的分析。

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