Visible to the public An Efficient Privacy-Preserving Algorithm Based on Randomized Response in IoT-Based Smart Grid

TitleAn Efficient Privacy-Preserving Algorithm Based on Randomized Response in IoT-Based Smart Grid
Publication TypeConference Paper
Year of Publication2018
AuthorsCao, H., Liu, S., Guan, Z., Wu, L., Deng, H., Du, X.
Conference Name2018 IEEE SmartWorld, Ubiquitous Intelligence Computing, Advanced Trusted Computing, Scalable Computing Communications, Cloud Big Data Computing, Internet of People and Smart City Innovation (SmartWorld/SCALCOM/UIC/ATC/CBDCom/IOP/SCI)
ISBN Number978-1-5386-9380-3
Keywordsbehavior characteristics, behavior signature modeling method, behavior signatures matrix, consumer behaviors, data privacy, Differential privacy, differential-privacy, energy consumption data, Human Behavior, Internet of Things, IoT, IoT-based smart grid, matrix algebra, Metrics, policy-based governance, power engineering computing, privacy-preserving algorithm, pubcrawl, Randomized Response, randomized response algorithm, Resiliency, response noise, Smart grid, Smart Grid Consumeer Privacy, smart grid consumer privacy, smart power grids, Sparse Coding, Utility-privacy tradeoff
Abstract

In this paper, we propose a new randomized response algorithm that can achieve differential-privacy and utility guarantees for consumer's behaviors, and process a batch of data at each time. Firstly, differing from traditional differential private approach-es, we add randomized response noise into the behavior signa-tures matrix to achieve an acceptable utility-privacy tradeoff. Secondly, a behavior signature modeling method based on sparse coding is proposed. After some lightweight trainings us-ing the energy consumption data, the dictionary will be associat-ed with the behavior characteristics of the electric appliances. At last, through the experimental results verification, we find that our Algorithm can preserve consumer's privacy without comprising utility.

URLhttps://ieeexplore.ieee.org/document/8560138
DOI10.1109/SmartWorld.2018.00160
Citation Keycao_efficient_2018