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Privacy-preserving smart metering with multiple data Consumers

机译:具有多个数据消费者的保护隐私的智能计量

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摘要

The increasing diffusion of Automatic Meter Reading (AMR) and the possibility to open the system to third party services has raised many concerns about the protection of personal data related to energy, water or gas consumption, from which details about the habits of the users can be inferred. This paper proposes an infrastructure and a communication protocol for allowing utilities and third parties (data Consumers) to collect measurement data with different levels of spatial and temporal aggregation from smart meters without revealing the individual measurements to any single node of the architecture. The proposed infrastructure introduces a set of functional nodes in the smart grid, namely the Privacy Preserving Nodes (PPNs), which collect customer data encrypted by means of Shamir's Secret Sharing Scheme, and are supposed to be controlled by independent parties. By exploiting the homomorphic properties of the sharing scheme, the measurements can be aggregated directly in the encrypted domain. Therefore, an honest-but-curious attacker can obtain neither disaggregated nor aggregated data. The PPNs perform different spatial and temporal aggregation for each Consumer according to its needs and access rights. The information Consumers recover the aggregated data by collecting multiple shares from the PPNs. The paper also discusses the problem of deploying the information flows from the customers to the PPNs and, then, to the information Consumers in a resource constrained environment. We prove that minimizing the number of PPNs is a NP-hard problem and propose a fast greedy algorithm. The scalability of the infrastructure is first analyzed under the assumption that the communication network is reliable and timely, then in presence of communication errors and node failures. The paper also evaluates the anonymity of external attackers.
机译:自动抄表(AMR)的普及和向第三方服务开放系统的可能性引起了人们对与能源,水或天然气消耗有关的个人数据的保护的许多关注,从这些细节中可以了解用户的习惯被推断。本文提出了一种基础设施和一种通信协议,允许公用事业公司和第三方(数据消费者)从智能电表收集具有不同级别的时空聚合的测量数据,而无需向架构的任何单个节点透露单个测量值。拟议的基础架构在智能电网中引入了一组功能节点,即隐私保护节点(PPN),该节点收集通过Shamir的秘密共享计划加密的客户数据,并应由独立的各方进行控制。通过利用共享方案的同态属性,可以直接在加密域中聚合测量结果。因此,诚实但好奇的攻击者无法获得分类数据或聚合数据。 PPN根据每个消费者的需求和访问权限对其执行不同的空间和时间聚合。信息消费者通过从PPN中收集多个份额来恢复汇总数据。本文还讨论了在资源受限的环境中将信息流从客户部署到PPN,然后再部署到信息消费者的问题。我们证明最小化PPN的数目是一个NP难题,并提出了一种快速贪婪算法。首先在通信网络可靠且及时的假设下分析基础架构的可伸缩性,然后在出现通信错误和节点故障的情况下进行分析。本文还评估了外部攻击者的匿名性。

著录项

  • 来源
    《Computer networks》 |2013年第7期|1699-1713|共15页
  • 作者单位

    Dipartimento di Elettronica, Informazione e Bioingegneria, Politecnico di Milano, Piazza Leonardo da Vinci, 32, Milano, Italy;

    Dipartimento di Elettronica, Informazione e Bioingegneria, Politecnico di Milano, Piazza Leonardo da Vinci, 32, Milano, Italy;

    Dipartimento di Elettronica, Informazione e Bioingegneria, Politecnico di Milano, Piazza Leonardo da Vinci, 32, Milano, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Smart grid; Multiparty computation; Data privacy;

    机译:智能电网;多方计算;资料私隐;

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