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Privacy-Preserving Smart Metering with Authentication in a Smart Grid

机译:在智能电网中通过身份验证保护隐私的智能计量

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The traditional security objectives of smart grids have been availability, integrity, and confidentiality. However, as the grids incorporate smart metering and load management, user and corporate privacy is increasingly becoming an issue in smart grid networks. Although transmitting current power consumption levels to the supplier or utility from each smart meter at short intervals has an advantage for the electricity supplier’s planning and management purposes, it threatens user privacy by disclosing fine-grained consumption data and usage behavior to utility providers. In this study, we propose a distributed incremental data aggregation scheme where all smart meters on an aggregation path are involved in routing the data from the source meter to the collection unit. User privacy is preserved by symmetric homomorphic encryption, which allows smart meters to participate in the aggregation without seeing any intermediate or final result. Aggregated data is further integrated with an aggregate signature to achieve data integrity and smart meter authentication in such a way that dishonest or fake smart meters cannot falsify data en route. Only the collection unit can obtain the aggregated data and verify its integrity while the individual plain data are not exposed to the collection unit. Therefore, user privacy and security are improved for the smart metering in a smart grid network.
机译:智能电网的传统安全目标是可用性,完整性和机密性。但是,由于网格包含智能计量和负载管理,因此用户和公司的隐私正日益成为智能网格网络中的一个问题。尽管从每个智能电表以短间隔向供应商或公用事业公司传输当前的功耗水平对于电力供应商的规划和管理目的是有好处的,但是它通过向公用事业提供商披露细粒度的消费数据和使用行为,威胁到用户隐私。在这项研究中,我们提出了一种分布式增量数据聚合方案,其中聚合路径上的所有智能电表都参与将数据从源电表路由到收集单元。对称同态加密可保护用户隐私,这使智能电表可以参与聚合,而不会看到任何中间结果或最终结果。聚合数据还与聚合签名进一步集成,以实现数据完整性和智能电表身份验证,从而使不诚实或伪造的智能电表无法伪造途中的数据。只有单独的原始数据不会暴露给收集单元,而只有收集单元才能获取汇总数据并验证其完整性。因此,对于智能电网中的智能计量,提高了用户隐私和安全性。

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