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Balancing Security and Efficiency for Smart Metering Against Misbehaving Collectors

机译:平衡安全性和效率以防止收集器行为异常

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Smart grid enables two-way communications between smart meters and operation centers to collect real-time power consumption of customers to improve flexibility, reliability, and efficiency of the power system. It brings serious privacy issues to customers, since the meter readings possibly expose customers' activities in the house. Data encryption can protect the readings, but lengthens the data size. Secure data aggregation improves communication efficiency and preserves customers' privacy, while fails to support dynamic billing, or offer integrity protection against public collectors, which may be hacked in reality. In this paper, we define a new security model to formalize the misbehavior of collectors, in which the misbehaving collectors may launch pollution attacks to corrupt power consumption data. Under this model, we propose a novel privacy-preserving smart metering scheme to prevent pollution attacks for the balance of security and efficiency in smart grid. It achieves end-to-end security, data aggregation, and integrity protection against the misbehaving collectors, which act as local gateways to collect and aggregate usage data and forward to operation centers. As a result, the misbehaving collectors cannot access or corrupt power usage data of customers. In addition, we design a dynamic billing mechanism based on individual power consumption maintained on collectors with the verification of customers. Our analysis shows that the proposed scheme achieves secure smart metering and verifiable dynamic billing against misbehaving collectors with low computational and communication overhead.
机译:智能电网可实现智能电表与运营中心之间的双向通信,以收集客户的实时功耗,从而提高电源系统的灵活性,可靠性和效率。由于电表读数可能会暴露客户在屋内的活动,因此给客户带来了严重的隐私问题。数据加密可以保护读数,但会延长数据大小。安全的数据聚合可提高通信效率并保护客户的隐私,同时无法支持动态计费,也无法提供针对公共收集者的完整性保护,而这实际上可能会遭到黑客入侵。在本文中,我们定义了一种新的安全模型来规范收集器的不当行为,其中,行为不当的收集器可能会发起污染攻击以破坏功耗数据。在此模型下,我们提出了一种新颖的保护隐私的智能计量方案,以防止污染攻击,以平衡智能电网的安全性和效率。它实现了端到端的安全性,数据聚合和完整性保护,以防止行为不当的收集器,这些收集器充当本地网关来收集和聚合使用情况数据并转发给运营中心。结果,行为不当的收集器无法访问或破坏客户的电力使用数据。此外,我们设计了一种动态计费机制,该机制基于收集器上维护的各个功耗并通过客户验证。我们的分析表明,该方案可实现安全的智能计量和可验证的动态计费,从而避免了收集器行为不佳且计算和通信开销较低的情况。

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