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Privacy-preserving protocols for secure and reliable data aggregation in IoT-enabled Smart Metering systems

机译:隐私保护协议可在启用IoT的智能电表系统中安全可靠地聚合数据

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As the Internet of Things (IoT) gets more pervasive, its areas of usage expands. Smart Metering systems is such an IoT-enabled technology that enables convenient and high frequency data collection compared to existing metering systems. However, such a frequent data collection puts the consumers' privacy in risk as it helps expose the consumers' daily habits. Secure in-network data aggregation can be used to both preserve consumers' privacy and reduce the packet traffic due to high frequency metering data. The privacy can be provided by performing the aggregation on concealed metering data. Fully homomorphic encryption (FHE) and secure multiparty computation (secure MPC) are the systems that enable performing multiple operations on concealed data. However, both FHE and secure MPC systems have some overhead in terms of data size or message complexity. The overhead is compounded in the IoT-enabled networks such as Smart Grid (SG) Advanced Metering Infrastructure (AMI). In this paper, we propose new protocols to adapt FHE and secure MPC to be deployed in SG AMI networks that are formed using wireless mesh networks. The proposed protocols conceal the smart meters' (SMs) reading data by encrypting it (FHE) or computing its shares on a randomly generated polynomial (secure MPC). The encrypted data/computed shares are aggregated at some certain aggregator SM(s) up to the gateway of the network in a hierarchical manner without revealing the readings' actual value. To assess their performance, we conducted extensive experiments using the ns-3 network simulator. The simulation results indicate that the secure MPC-based protocol can be a viable privacy-preserving data aggregation mechanism since it not only reduces the overhead with respect to FHE but also almost matches the performance of the Paillier cryptosystem when it is used within a proper sized AMI network.
机译:随着物联网(IoT)的普及,其使用范围也在扩大。智能电表系统是一种基于IoT的技术,与现有的电表系统相比,它可以方便,高频地收集数据。然而,如此频繁的数据收集使消费者的隐私面临风险,因为它有助于暴露消费者的日常习惯。安全的网络内数据聚合可用于保护消费者的隐私并减少由于高频计量数据而引起的数据包流量。可以通过对隐藏的计量数据执行聚合来提供隐私。完全同态加密(FHE)和安全的多方计算(安全的MPC)是允许对隐藏数据执行多项操作的系统。但是,FHE和安全MPC系统在数据大小或消息复杂性方面都有一些开销。开销在启用IoT的网络(例如智能电网(SG)高级计量基础架构(AMI))中更为复杂。在本文中,我们提出了新的协议,以适应FHE和安全MPC,以部署在使用无线网状网络形成的SG AMI网络中。所提出的协议通过对智能电表(SM)进行加密(FHE)或在随机生成的多项式(安全MPC)上计算其份额来隐藏读取数据。加密的数据/计算出的份额在某些特定的聚合器SM处以分层的方式聚合到网络的网关,而不会透露读数的实际值。为了评估其性能,我们使用ns-3网络模拟器进行了广泛的实验。仿真结果表明,基于安全的基于MPC的协议可以成为可行的保护隐私的数据聚合机制,因为它不仅减少了FHE的开销,而且在适当大小下使用时几乎与Paillier密码系统的性能相匹配。 AMI网络。

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