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PMDA: Privacy-Preserving Multi-functional Data Aggregation Without TTP in Smart Grid

机译:PMDA:智能电网中无需TTP即可保护隐私的多功能数据聚合

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摘要

In the smart grid, residents' electricity usage needs to be periodically measured and reported for the purpose of better energy management. At the same time, real-time collection of residents' electricity consumption may unfavorably incur privacy leakage, which has motivated the research on privacy-preserving aggregation of electricity readings. Most previous studies either rely on a trusted third party (TTP) or suffer from expensive computation. In this paper, we first reveal the privacy flaws of a very recent scheme pursing privacy preservation without relying on the TTP. By presenting concrete attacks, we show that this scheme has failed to meet the design goals. Then, for better privacy protection, we construct a new scheme called PMDA, which utilizes Shamir's secret sharing to allow smart meters to negotiate aggregation parameters in the absence of a TTP. Using only lightweight cryptography, PMDA efficiently supports multi-functional aggregation of the electricity readings, and simultaneously preserves residents' privacy. Theoretical analysis is provided with regard to PMDA's security and efficiency. Moreover, experimental data obtained from a prototype indicates that our proposal is efficient and feasible for practical deployment.
机译:在智能电网中,需要定期测量和报告居民的用电量,以实现更好的能源管理。同时,居民用电量的实时采集可能不利于隐私的泄漏,这激发了对电力读数的隐私保护聚合的研究。以前的大多数研究要么依赖可信赖的第三方(TTP),要么遭受昂贵的计算。在本文中,我们首先揭示了不依赖TTP追求隐私保护的最新方案的隐私缺陷。通过提出具体的攻击,我们表明该方案未能达到设计目标。然后,为了更好地保护隐私,我们构建了一个称为PMDA的新方案,该方案利用Shamir的秘密共享功能,允许智能电表在没有TTP的情况下协商聚合参数。 PMDA仅使用轻量级加密技术,即可有效地支持电读数的多功能汇总,并同时保护居民的隐私。提供了有关PMDA的安全性和效率的理论分析。此外,从原型获得的实验数据表明,我们的建议对于实际部署是有效且可行的。

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