An efficient identity-based signature protocol over lattices for the smart grid

As the promising next-generation power grid, the smart grid has developed rapidly in recent years. The smart grid enables energy to be stored and delivered more efficiently and safely, but user data’s integrity protection has been an important security issue in the smart grid. Although lots of digit...

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Main Authors: Longzhu Zhu, Fan Jiang, Min Luo, Quanrun Li
Format: Article
Language:English
Published: Elsevier 2023-12-01
Series:High-Confidence Computing
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2667295223000454
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author Longzhu Zhu
Fan Jiang
Min Luo
Quanrun Li
author_facet Longzhu Zhu
Fan Jiang
Min Luo
Quanrun Li
author_sort Longzhu Zhu
collection DOAJ
description As the promising next-generation power grid, the smart grid has developed rapidly in recent years. The smart grid enables energy to be stored and delivered more efficiently and safely, but user data’s integrity protection has been an important security issue in the smart grid. Although lots of digital signature protocols for the smart grid have been proposed to resolve this problem, they are vulnerable to quantum attacks. To deal with this problem, an efficient identity-based signature protocol on lattices is proposed in this paper. To improve our protocol’s efficiency, the tree of commitments is utilized. Moreover, a detailed performance evaluation of the proposed protocol is made. The performance analysis demonstrates that the potential utility of our protocol in the smart grid is huge.
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spelling doaj.art-701c9118240142e1ba439d0207a21c272023-12-07T05:31:21ZengElsevierHigh-Confidence Computing2667-29522023-12-0134100147An efficient identity-based signature protocol over lattices for the smart gridLongzhu Zhu0Fan Jiang1Min Luo2Quanrun Li3Customer Service Center of State Grid Corporation, Tianjin 300143, ChinaCustomer Service Center of State Grid Corporation, Tianjin 300143, ChinaSchool of Cyber Science and Engineering, Wuhan University, Wuhan 430072, ChinaSchool of Cyber Science and Engineering, Wuhan University, Wuhan 430072, China; Corresponding author.As the promising next-generation power grid, the smart grid has developed rapidly in recent years. The smart grid enables energy to be stored and delivered more efficiently and safely, but user data’s integrity protection has been an important security issue in the smart grid. Although lots of digital signature protocols for the smart grid have been proposed to resolve this problem, they are vulnerable to quantum attacks. To deal with this problem, an efficient identity-based signature protocol on lattices is proposed in this paper. To improve our protocol’s efficiency, the tree of commitments is utilized. Moreover, a detailed performance evaluation of the proposed protocol is made. The performance analysis demonstrates that the potential utility of our protocol in the smart grid is huge.http://www.sciencedirect.com/science/article/pii/S2667295223000454Smart gridIdentity-based signatureTree of commitmentsLattice
spellingShingle Longzhu Zhu
Fan Jiang
Min Luo
Quanrun Li
An efficient identity-based signature protocol over lattices for the smart grid
High-Confidence Computing
Smart grid
Identity-based signature
Tree of commitments
Lattice
title An efficient identity-based signature protocol over lattices for the smart grid
title_full An efficient identity-based signature protocol over lattices for the smart grid
title_fullStr An efficient identity-based signature protocol over lattices for the smart grid
title_full_unstemmed An efficient identity-based signature protocol over lattices for the smart grid
title_short An efficient identity-based signature protocol over lattices for the smart grid
title_sort efficient identity based signature protocol over lattices for the smart grid
topic Smart grid
Identity-based signature
Tree of commitments
Lattice
url http://www.sciencedirect.com/science/article/pii/S2667295223000454
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