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LAKE-BSG: Lightweight authenticated key exchange scheme for blockchain-enabled smart grids

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LAKE-BSG: Lightweight authenticated key exchange scheme for blockchain-enabled smart grids. / Badshah, Akhtar; Waqas, Muhammad; Abbas, Ghulam et al.
In: Sustainable Energy Technologies and Assessments, Vol. 52, 102248, 31.08.2022.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Badshah, A, Waqas, M, Abbas, G, Muhammad, F, Abbas, ZH, Vimal, S & Bilal, M 2022, 'LAKE-BSG: Lightweight authenticated key exchange scheme for blockchain-enabled smart grids', Sustainable Energy Technologies and Assessments, vol. 52, 102248. https://doi.org/10.1016/j.seta.2022.102248

APA

Badshah, A., Waqas, M., Abbas, G., Muhammad, F., Abbas, Z. H., Vimal, S., & Bilal, M. (2022). LAKE-BSG: Lightweight authenticated key exchange scheme for blockchain-enabled smart grids. Sustainable Energy Technologies and Assessments, 52, Article 102248. https://doi.org/10.1016/j.seta.2022.102248

Vancouver

Badshah A, Waqas M, Abbas G, Muhammad F, Abbas ZH, Vimal S et al. LAKE-BSG: Lightweight authenticated key exchange scheme for blockchain-enabled smart grids. Sustainable Energy Technologies and Assessments. 2022 Aug 31;52:102248. Epub 2022 May 2. doi: 10.1016/j.seta.2022.102248

Author

Badshah, Akhtar ; Waqas, Muhammad ; Abbas, Ghulam et al. / LAKE-BSG : Lightweight authenticated key exchange scheme for blockchain-enabled smart grids. In: Sustainable Energy Technologies and Assessments. 2022 ; Vol. 52.

Bibtex

@article{8ff135cc7a754c8ebc403406544a3d8f,
title = "LAKE-BSG: Lightweight authenticated key exchange scheme for blockchain-enabled smart grids",
abstract = "The Smart grid employs information and communication networks to collect data on energy production and consumption, and then utilize it to improve efficiency, reliability, economic benefit, power generation, and distribution sustainability. However, in SG networks the components communicate over insecure public channels, raising severe security concerns. Likewise, the security challenge is growing more difficult with the introduction of virtual solutions in SG networks. Thus, we devise a new scheme, named lightweight authenticated key exchange scheme for a blockchain-enabled SG environment (LAKE-BSG), which permits secure communication among smart meters (SMs) and service providers (SPs). In the proposed scheme, data is kept secured in a blockchain network. SPs are liable for verifying new blocks in the private blockchain through a consensus algorithm. We provide a detailed security analysis of LAKE-BSG through informal security analysis, formal security analysis using the real oracle model, and formal security verification using the Scyther tool. The results demonstrate that the devised scheme is resilient towards various security attacks in an SG environment. Furthermore, an exhaustive comparative analysis reveals that LAKE-BSG is efficient in terms of communication and computation overheads and provides additional security and functionality features.",
keywords = "Authentication, Blockchain, Key exchange scheme, Security, Smart grid",
author = "Akhtar Badshah and Muhammad Waqas and Ghulam Abbas and Fazal Muhammad and Abbas, {Ziaul Haq} and S. Vimal and Muhammad Bilal",
year = "2022",
month = aug,
day = "31",
doi = "10.1016/j.seta.2022.102248",
language = "English",
volume = "52",
journal = "Sustainable Energy Technologies and Assessments",
issn = "2213-1388",
publisher = "Elsevier Ltd",

}

RIS

TY - JOUR

T1 - LAKE-BSG

T2 - Lightweight authenticated key exchange scheme for blockchain-enabled smart grids

AU - Badshah, Akhtar

AU - Waqas, Muhammad

AU - Abbas, Ghulam

AU - Muhammad, Fazal

AU - Abbas, Ziaul Haq

AU - Vimal, S.

AU - Bilal, Muhammad

PY - 2022/8/31

Y1 - 2022/8/31

N2 - The Smart grid employs information and communication networks to collect data on energy production and consumption, and then utilize it to improve efficiency, reliability, economic benefit, power generation, and distribution sustainability. However, in SG networks the components communicate over insecure public channels, raising severe security concerns. Likewise, the security challenge is growing more difficult with the introduction of virtual solutions in SG networks. Thus, we devise a new scheme, named lightweight authenticated key exchange scheme for a blockchain-enabled SG environment (LAKE-BSG), which permits secure communication among smart meters (SMs) and service providers (SPs). In the proposed scheme, data is kept secured in a blockchain network. SPs are liable for verifying new blocks in the private blockchain through a consensus algorithm. We provide a detailed security analysis of LAKE-BSG through informal security analysis, formal security analysis using the real oracle model, and formal security verification using the Scyther tool. The results demonstrate that the devised scheme is resilient towards various security attacks in an SG environment. Furthermore, an exhaustive comparative analysis reveals that LAKE-BSG is efficient in terms of communication and computation overheads and provides additional security and functionality features.

AB - The Smart grid employs information and communication networks to collect data on energy production and consumption, and then utilize it to improve efficiency, reliability, economic benefit, power generation, and distribution sustainability. However, in SG networks the components communicate over insecure public channels, raising severe security concerns. Likewise, the security challenge is growing more difficult with the introduction of virtual solutions in SG networks. Thus, we devise a new scheme, named lightweight authenticated key exchange scheme for a blockchain-enabled SG environment (LAKE-BSG), which permits secure communication among smart meters (SMs) and service providers (SPs). In the proposed scheme, data is kept secured in a blockchain network. SPs are liable for verifying new blocks in the private blockchain through a consensus algorithm. We provide a detailed security analysis of LAKE-BSG through informal security analysis, formal security analysis using the real oracle model, and formal security verification using the Scyther tool. The results demonstrate that the devised scheme is resilient towards various security attacks in an SG environment. Furthermore, an exhaustive comparative analysis reveals that LAKE-BSG is efficient in terms of communication and computation overheads and provides additional security and functionality features.

KW - Authentication

KW - Blockchain

KW - Key exchange scheme

KW - Security

KW - Smart grid

U2 - 10.1016/j.seta.2022.102248

DO - 10.1016/j.seta.2022.102248

M3 - Journal article

AN - SCOPUS:85129644617

VL - 52

JO - Sustainable Energy Technologies and Assessments

JF - Sustainable Energy Technologies and Assessments

SN - 2213-1388

M1 - 102248

ER -