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Privacy-Assured Aggregation Protocol for Smart Metering: A Proactive Fault-Tolerant Approach
Journal article   Peer reviewed

Privacy-Assured Aggregation Protocol for Smart Metering: A Proactive Fault-Tolerant Approach

Jongho Won, Chris Y. T. Ma, David K. Y. Yau, Nageswara S. V. Rao, Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States) and King Yeung Yau
IEEE/ACM transactions on networking, Vol.24(3), pp.1661-1674
01/06/2016

Abstract

Data privacy Encryption Fault tolerance Fault tolerant systems information security Noise Privacy Protocols Smart meters
Smart meters are integral to demand response in emerging smart grids, by reporting the electricity consumption of users to serve application needs. But reporting real-time usage information for individual households raises privacy concerns. Existing techniques to guarantee differential privacy (DP) of smart meter users either are not fault tolerant or achieve (possibly partial) fault tolerance at high communication overheads. In this paper, we propose a fault-tolerant protocol for smart metering that can handle general communication failures while ensuring DP with significantly improved efficiency and lower errors compared with the state of the art. Our protocol handles fail-stop faults proactively by using a novel design of future ciphertexts, and distributes trust among the smart meters by sharing secret keys among them. We prove the DP properties of our protocol and analyze its advantages in fault tolerance, accuracy, and communication efficiency relative to competing techniques. We illustrate our analysis by simulations driven by real-world traces of electricity consumption.

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