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Efficient privacy-preserving temporal and spacial data aggregation for smart grid communications

机译:高效的隐私保护时空数据聚合,用于智能电网通信

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Smart grid is ever-increasingly adopted by nations and governments for its grand development with the underlying technologies of power management and information communications. The real-time electricity usage can be monitored and aggregated by the smart meters deployed in the household for further analysis, control, and pricing. However, the existing solutions mainly depend on Paillier's additive homomorphic encryptions taking high computational complexity, and the aggregation mainly focused on the time series data generated by one single user. In this paper, we propose an efficient privacy-preserving temporal and spacial data aggregation from one-way functions in smart grid communications, which also allows spacial data aggregation from multiple users. The proposed construction can guarantee the unconditional security of users' metering power data privacy from the community gateway and the operation center, and the Adaptive Chosen Ciphertext Attack (CCA2) security of the aggregation result that can only be accessed by the authorized operating center. Both temporal and spacial data aggregation only require computing the underlying one-way function once. The formal security proof and performance evaluations demonstrate the efficiency and the practicability of our scheme. Copyright © 2015 John Wiley & Sons, Ltd.
机译:智能电网随着电源管理和信息通信的基础技术的迅猛发展而被国家和政府越来越多地采用。实时用电量可以通过家庭中部署的智能电表进行监控和汇总,以进行进一步的分析,控制和定价。但是,现有的解决方案主要依赖于Paillier的加法同态加密,具有很高的计算复杂性,并且聚合主要集中在一个用户生成的时间序列数据上。在本文中,我们从智能电网通信中的单向功能提出了一种有效的隐私保护时间和空间数据聚合,它还允许来自多个用户的空间数据聚合。所提出的构造可以保证来自社区网关和运营中心的用户计量功率数据隐私的无条件安全性,以及只能由授权运营中心访问的聚合结果的自适应选择密文攻击(CCA2)安全性。时间和空间数据聚合都只需要计算一次基础单向函数。正式的安全证明和性能评估证明了我们方案的效率和实用性。版权所有©2015 John Wiley&Sons,Ltd.

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