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User-Centric Multiobjective Approach to Privacy Preservation and Energy Cost Minimization in Smart Home

Chang, Hsuan-Hao; Chiu, Wei-Yu; Sun, Hongjian; Chen, Chia-Ming

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Authors

Hsuan-Hao Chang

Wei-Yu Chiu

Chia-Ming Chen



Abstract

This paper investigates smart home energy management in consideration of tradeoffs between residential privacy and energy costs. A multiobjective approach that minimizes energy costs and maximizes privacy protection is proposed. The approach leads to a multiobjective optimization problem in which the two objectives are addressed in separate dimensions. A hybrid algorithm that employs a stochastic search for power scheduling of home appliances and uses deterministic battery control is developed accordingly. The proposed approach can avoid some drawbacks faced by conventional weighted-sum methods for multiobjective optimization: the combination of objectives in different units, heuristic assignment of weighting coefficients, and possible misrepresentation of user preference. In contrast with existing studies on residential user privacy that assume limited controllability of appliances to facilitate algorithm development, this approach addresses the use of flexible appliances in smart homes. Simulations reveal that the proposed approach can maintain a reasonable energy cost while robustly preserving user privacy at a sensible level; its convergence rate is comparable to existing multiobjective evolutionary algorithms while the proposed approach yields a better level of convergence; the proposed approach is scalable to a group of smart houses, achieving a superior peak-to-average ratio that is beneficial to the stability of the underlying power grid.

Citation

Chang, H., Chiu, W., Sun, H., & Chen, C. (2019). User-Centric Multiobjective Approach to Privacy Preservation and Energy Cost Minimization in Smart Home. IEEE Systems Journal, 13(1), 1030-1041. https://doi.org/10.1109/jsyst.2018.2876345

Journal Article Type Article
Acceptance Date Oct 10, 2018
Online Publication Date Nov 6, 2018
Publication Date Mar 31, 2019
Deposit Date Oct 10, 2018
Publicly Available Date Oct 11, 2018
Journal IEEE Systems Journal
Print ISSN 1932-8184
Electronic ISSN 1937-9234
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
Volume 13
Issue 1
Pages 1030-1041
DOI https://doi.org/10.1109/jsyst.2018.2876345

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