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A lightweight privacy-preserving scheme with data integrity for smart grid communications

机译:用于智能电网通信的具有数据完整性的轻量级隐私保护方案

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Smart grid, deemed as the next generation of power grid, can efficiently monitor, control, and predicate energy generation and consumption. However, the frequent collection of users' consumption information in smart grid may reveal user's privacy, and the tampering of smart grid communication may also impair the data integrity, subsequently affecting the precise monitoring and controlling at the control center. In this paper, to address the aforementioned challenges, we propose a lightweight data report scheme for smart grid communications, which can achieve privacy preservation and data integrity simultaneously. Specifically, an efficient pseudonym identity-based privacy-preserving report approach is proposed for the control center to obtain the fine-grained usage data of all the users while protecting user's privacy. An online/off-line hash tree-based mechanism is also designed to check and assure data integrity of communications. Because of the shifting of most time-consuming computations to off-line phase, the online process is very fast and efficient by performing merely the lightweight bottom-up hash tree verifications to check all users' data integrity concurrently. Furthermore, a topology-independent data report architecture is also structured, which is adaptable for dynamic residential users to spontaneously form clusters and efficiently report data in flocks. Extensive performance evaluation demonstrates that the proposed scheme can achieve less communication overhead and dramatically reduce computational cost in comparison with the existing schemes. Copyright © 2015 John Wiley & Sons, Ltd.
机译:智能电网被视为下一代电网,可以有效地监视,控制和预测能源的产生和消耗。但是,在智能电网中频繁收集用户的消费信息可能会泄露用户的隐私,而对智能电网通信的篡改也可能损害数据完整性,从而影响控制中心的精确监控。在本文中,为了解决上述挑战,我们提出了一种用于智能电网通信的轻量级数据报告方案,该方案可以同时实现隐私保护和数据完整性。具体而言,为控制中心提出一种有效的基于假名身份的隐私保护报告方法,以在保护用户隐私的同时获取所有用户的细粒度使用数据。还设计了一种基于在线/离线哈希树的机制,以检查并确保通信的数据完整性。由于大多数耗时的计算已移至离线阶段,因此仅执行轻量级自下而上的哈希树验证以同时检查所有用户的数据完整性,即可非常快速高效地实现在线过程。此外,还构建了与拓扑无关的数据报告体系结构,该体系结构适用于动态住宅用户自发形成集群并有效地报告群中的数据。广泛的性能评估表明,与现有方案相比,该方案可实现更少的通信开销并显着降低计算成本。版权所有©2015 John Wiley&Sons,Ltd.

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