A novel efficient and lightweight authentication scheme for secure smart grid communication systems

被引:0
作者
Hamza Hammami
Sadok Ben Yahia
Mohammad S. Obaidat
机构
[1] National Institute of Applied Sciences of Lyon,DRIM Research Team, LIRIS UMR 5205 CNRS, INSA Lyon
[2] University of Tunis El Manar,Faculty of Sciences of Tunis
[3] Tallinn University of Technology,Department of Software Science
[4] University of Texas-Permian Basin,Computer Science Department, and Director of Cybersecurity Center
[5] University of Jordan,King Abdullah II School of Information Technology
[6] University of Science and Technology Beijing,School of Computer and Communication Engineering
[7] Amity University,undefined
来源
The Journal of Supercomputing | 2023年 / 79卷
关键词
Smart grid; Consumption; Attacks; Security; Costs;
D O I
暂无
中图分类号
学科分类号
摘要
The smart grid designates an innovative technology integrating new information and communication technologies to modernize the energy distribution network and facilitate the transmission of consumption and billing data between production and distribution points. However, the data transmission over the network allows attackers to listen to and subsequently falsify these data, which poses a significant security problem. For this reason, various research works have been very successful in the past decades, with many proposals and improvements over time. However, many suffer from recurring problems regarding high computation and communication costs, and others have been vulnerable to several types of attacks. All these observations have led us to devise a new scheme that provides mutual authentication and authenticated key agreement, which aims to preserve the privacy and security of all communications exchanged in the smart grid against any attack attempt aimed at during network migrations. The experimental results confirm the efficiency and reliability of our contribution in terms of calculation and communication costs and show that our solution provides a high level of security with minimal general costs compared to other competing solutions proposed in the literature.
引用
收藏
页码:7360 / 7376
页数:16
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共 51 条
[1]  
Jiang Z(2022)A novel application architecture of digital twin in smart grid J Ambient Intell Human Comput 13 3819-3835
[2]  
Lv H(2022)Impact of battery storage on residential energy consumption: an Australian case study based on smart meter data Renew Energy 182 390-400
[3]  
Li Y(2022)Scalability and replicability for smart grid innovation projects and the improvement of renewable energy sources exploitation: the FLEXITRANSTORE case Energies 15 4519-4014
[4]  
Guo Y(2019)Communication in smart grids: A comprehensive review on the existing and future communication and information infrastructures IEEE Syst J 13 4001-43174
[5]  
Al Khafaf N(2022)Privacy-preserving fog aggregation of smart grid data using dynamic differentially-private data perturbation IEEE Access 10 43159-4359
[6]  
Rezaei AA(2022)Data security tolerance and portable based energy-efficient framework in sensor networks for smart grid environments Sustain Energy Technol Assess 52 4349-914
[7]  
Amani AM(2018)Lightweight authentication and key agreement for smart metering in smart energy networks IEEE Trans Smart Grid 10 906-1910
[8]  
Jalili M(2015)Secure anonymous key distribution scheme for smart grid IEEE Trans Smart Grid 7 1900-1802
[9]  
McGrath B(2016)Provably secure authenticated key agreement scheme for smart grid IEEE Trans Smart Grid 9 1795-156
[10]  
Meegahapola L(2016)Lightweight anonymous key distribution scheme for smart grid using elliptic curve cryptography IET Commun 10 143-64