Multiauthority Traceable Ring Signature Scheme for Smart Grid Based on Blockchain

As the next-generation power grid system, the smart grid can realize the balance of supply and demand and help in communication security and privacy protection. However, real-time power consumption data collection might expose the users’ privacy information, such as their living habits and economic...

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Main Authors: Fei Tang, Junjie Pang, Kefei Cheng, Qianhong Gong
Format: Article
Language:English
Published: Hindawi-Wiley 2021-01-01
Series:Wireless Communications and Mobile Computing
Online Access:http://dx.doi.org/10.1155/2021/5566430
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spelling doaj-9e668590c8b54113acc404ce094ad1f82021-04-19T00:05:37ZengHindawi-WileyWireless Communications and Mobile Computing1530-86772021-01-01202110.1155/2021/5566430Multiauthority Traceable Ring Signature Scheme for Smart Grid Based on BlockchainFei Tang0Junjie Pang1Kefei Cheng2Qianhong Gong3School of Computer Science and TechnologySchool of Computer Science and TechnologySchool of Cyber Security and Information LawSchool of Software EngineeringAs the next-generation power grid system, the smart grid can realize the balance of supply and demand and help in communication security and privacy protection. However, real-time power consumption data collection might expose the users’ privacy information, such as their living habits and economic conditions. In addition, during the process of data transmission, it may lead to data inconsistency between the user side and the storage side. Blockchain provides tamper-resistant and traceable characteristics for solving these problems, and ring signature schemes provide an anonymous authentication mechanism. Therefore, in this work, we consider the applications of ring signature scheme in smart grid based on blockchain. We introduce the notion of multi-authority traceable ring signature (MA-TRS) scheme for distributed setting. In our scheme, there is an auditing node that can distinguish the identity of the real signer from the ring without any secret information. Last but not least, we prove that the proposed scheme is unforgeable, anonymous, and traceable.http://dx.doi.org/10.1155/2021/5566430
collection DOAJ
language English
format Article
sources DOAJ
author Fei Tang
Junjie Pang
Kefei Cheng
Qianhong Gong
spellingShingle Fei Tang
Junjie Pang
Kefei Cheng
Qianhong Gong
Multiauthority Traceable Ring Signature Scheme for Smart Grid Based on Blockchain
Wireless Communications and Mobile Computing
author_facet Fei Tang
Junjie Pang
Kefei Cheng
Qianhong Gong
author_sort Fei Tang
title Multiauthority Traceable Ring Signature Scheme for Smart Grid Based on Blockchain
title_short Multiauthority Traceable Ring Signature Scheme for Smart Grid Based on Blockchain
title_full Multiauthority Traceable Ring Signature Scheme for Smart Grid Based on Blockchain
title_fullStr Multiauthority Traceable Ring Signature Scheme for Smart Grid Based on Blockchain
title_full_unstemmed Multiauthority Traceable Ring Signature Scheme for Smart Grid Based on Blockchain
title_sort multiauthority traceable ring signature scheme for smart grid based on blockchain
publisher Hindawi-Wiley
series Wireless Communications and Mobile Computing
issn 1530-8677
publishDate 2021-01-01
description As the next-generation power grid system, the smart grid can realize the balance of supply and demand and help in communication security and privacy protection. However, real-time power consumption data collection might expose the users’ privacy information, such as their living habits and economic conditions. In addition, during the process of data transmission, it may lead to data inconsistency between the user side and the storage side. Blockchain provides tamper-resistant and traceable characteristics for solving these problems, and ring signature schemes provide an anonymous authentication mechanism. Therefore, in this work, we consider the applications of ring signature scheme in smart grid based on blockchain. We introduce the notion of multi-authority traceable ring signature (MA-TRS) scheme for distributed setting. In our scheme, there is an auditing node that can distinguish the identity of the real signer from the ring without any secret information. Last but not least, we prove that the proposed scheme is unforgeable, anonymous, and traceable.
url http://dx.doi.org/10.1155/2021/5566430
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