Secure and efficient mutual authentication protocol for smart grid under blockchain

Smart grid has been acknowledged as the next-generation intelligent network that optimizes energy efficiency. Primarily through a bidirectional communication channel, suppliers and users can dynamically adjust power transmission in real time. Nonetheless, many security issues occur with the widespre...

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Published inPeer-to-peer networking and applications Vol. 14; no. 5; pp. 2681 - 2693
Main Authors Wang, Weizheng, Huang, Huakun, Zhang, Lejun, Su, Chunhua
Format Journal Article
LanguageEnglish
Published New York Springer US 01.09.2021
Springer Nature B.V
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Abstract Smart grid has been acknowledged as the next-generation intelligent network that optimizes energy efficiency. Primarily through a bidirectional communication channel, suppliers and users can dynamically adjust power transmission in real time. Nonetheless, many security issues occur with the widespread deployment of smart grid, e.g., centralized register authority and potential Distributed-Denial-of-Service (DDoS) attack. These existing problems threaten the availability of smart grid. In this paper, we mainly focus on solving some identity authentication issues remained in the smart grid. Combined with blockchain, Elliptic Curve Cryptography (ECC), dynamic Join-and-Exit mechanism and batch verification, a reliable and efficient authentication protocol is proposed for smart meters and utility centers. Simultaneously, the provable security of this protocol is assured by the computational hard problem assumptions. Experiment results show that our protocol has achieved security and performance improvement compared with the other ECC related schemes.
AbstractList Smart grid has been acknowledged as the next-generation intelligent network that optimizes energy efficiency. Primarily through a bidirectional communication channel, suppliers and users can dynamically adjust power transmission in real time. Nonetheless, many security issues occur with the widespread deployment of smart grid, e.g., centralized register authority and potential Distributed-Denial-of-Service (DDoS) attack. These existing problems threaten the availability of smart grid. In this paper, we mainly focus on solving some identity authentication issues remained in the smart grid. Combined with blockchain, Elliptic Curve Cryptography (ECC), dynamic Join-and-Exit mechanism and batch verification, a reliable and efficient authentication protocol is proposed for smart meters and utility centers. Simultaneously, the provable security of this protocol is assured by the computational hard problem assumptions. Experiment results show that our protocol has achieved security and performance improvement compared with the other ECC related schemes.
Author Su, Chunhua
Huang, Huakun
Wang, Weizheng
Zhang, Lejun
Author_xml – sequence: 1
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  givenname: Lejun
  surname: Zhang
  fullname: Zhang, Lejun
  organization: College of Information Engineering, Yangzhou University
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  givenname: Chunhua
  surname: Su
  fullname: Su, Chunhua
  email: chsu@u-aizu.ac.jp
  organization: School of Computer Science and Engineering, University of Aizu, Cyberspace Security Research Center, Peng Cheng Laboratory
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Keywords Privacy
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Elliptic Curve Cryptography (ECC)
Smart grid
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Blockchain
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Snippet Smart grid has been acknowledged as the next-generation intelligent network that optimizes energy efficiency. Primarily through a bidirectional communication...
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SubjectTerms Authentication
Blockchain
Communications Engineering
Computer Communication Networks
Cryptography
Curves
Denial of service attacks
Engineering
Information Systems and Communication Service
Intelligent networks
Networks
Security
Signal,Image and Speech Processing
Smart grid
Special Issue on Blockchain for Peer-to-Peer Computing
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Title Secure and efficient mutual authentication protocol for smart grid under blockchain
URI https://link.springer.com/article/10.1007/s12083-020-01020-2
https://www.proquest.com/docview/2562653245
Volume 14
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