EPPRD: An Efficient Privacy-Preserving Power Requirement and Distribution Aggregation Scheme for a Smart Grid

A Smart Grid (SG) facilitates bidirectional demand-response communication between individual users and power providers with high computation and communication performance but also brings about the risk of leaking users’ private information. Therefore, improving the individual power requirement and d...

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Main Authors: Lei Zhang, Jing Zhang
Format: Article
Language:English
Published: MDPI AG 2017-08-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/17/8/1814
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spelling doaj-e0f7d4f7f91545978ae9c5b6430f63da2020-11-24T23:06:01ZengMDPI AGSensors1424-82202017-08-01178181410.3390/s17081814s17081814EPPRD: An Efficient Privacy-Preserving Power Requirement and Distribution Aggregation Scheme for a Smart GridLei Zhang0Jing Zhang1College of Computer Science and Technology, Harbin Engineering University, Harbin 150001, ChinaCollege of Computer Science and Technology, Harbin Engineering University, Harbin 150001, ChinaA Smart Grid (SG) facilitates bidirectional demand-response communication between individual users and power providers with high computation and communication performance but also brings about the risk of leaking users’ private information. Therefore, improving the individual power requirement and distribution efficiency to ensure communication reliability while preserving user privacy is a new challenge for SG. Based on this issue, we propose an efficient and privacy-preserving power requirement and distribution aggregation scheme (EPPRD) based on a hierarchical communication architecture. In the proposed scheme, an efficient encryption and authentication mechanism is proposed for better fit to each individual demand-response situation. Through extensive analysis and experiment, we demonstrate how the EPPRD resists various security threats and preserves user privacy while satisfying the individual requirement in a semi-honest model; it involves less communication overhead and computation time than the existing competing schemes.https://www.mdpi.com/1424-8220/17/8/1814smart gridsmart meterprivacy-preservingpower requirement and distributionhomomorphic aggregationhash message authentication code
collection DOAJ
language English
format Article
sources DOAJ
author Lei Zhang
Jing Zhang
spellingShingle Lei Zhang
Jing Zhang
EPPRD: An Efficient Privacy-Preserving Power Requirement and Distribution Aggregation Scheme for a Smart Grid
Sensors
smart grid
smart meter
privacy-preserving
power requirement and distribution
homomorphic aggregation
hash message authentication code
author_facet Lei Zhang
Jing Zhang
author_sort Lei Zhang
title EPPRD: An Efficient Privacy-Preserving Power Requirement and Distribution Aggregation Scheme for a Smart Grid
title_short EPPRD: An Efficient Privacy-Preserving Power Requirement and Distribution Aggregation Scheme for a Smart Grid
title_full EPPRD: An Efficient Privacy-Preserving Power Requirement and Distribution Aggregation Scheme for a Smart Grid
title_fullStr EPPRD: An Efficient Privacy-Preserving Power Requirement and Distribution Aggregation Scheme for a Smart Grid
title_full_unstemmed EPPRD: An Efficient Privacy-Preserving Power Requirement and Distribution Aggregation Scheme for a Smart Grid
title_sort epprd: an efficient privacy-preserving power requirement and distribution aggregation scheme for a smart grid
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2017-08-01
description A Smart Grid (SG) facilitates bidirectional demand-response communication between individual users and power providers with high computation and communication performance but also brings about the risk of leaking users’ private information. Therefore, improving the individual power requirement and distribution efficiency to ensure communication reliability while preserving user privacy is a new challenge for SG. Based on this issue, we propose an efficient and privacy-preserving power requirement and distribution aggregation scheme (EPPRD) based on a hierarchical communication architecture. In the proposed scheme, an efficient encryption and authentication mechanism is proposed for better fit to each individual demand-response situation. Through extensive analysis and experiment, we demonstrate how the EPPRD resists various security threats and preserves user privacy while satisfying the individual requirement in a semi-honest model; it involves less communication overhead and computation time than the existing competing schemes.
topic smart grid
smart meter
privacy-preserving
power requirement and distribution
homomorphic aggregation
hash message authentication code
url https://www.mdpi.com/1424-8220/17/8/1814
work_keys_str_mv AT leizhang epprdanefficientprivacypreservingpowerrequirementanddistributionaggregationschemeforasmartgrid
AT jingzhang epprdanefficientprivacypreservingpowerrequirementanddistributionaggregationschemeforasmartgrid
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