智能微电网环境下的鲁棒认证与密钥协议

IF 3.7 2区 计算机科学 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
Raveendra Babu Ponnuru , Sathish A.P. Kumar , Mohamad Azab , Basker Palaniswamy , Goutham Reddy Alavalapati
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引用次数: 0

摘要

在不断发展的智能微电网中,集成先进的通信技术显著提高了配电效率、可靠性和可持续性。然而,这种集成带来了实质性的安全挑战,特别是在身份验证和关键协议过程方面,这对于维护智能电网通信的完整性和机密性至关重要。本文结合ECC、物理不可克隆函数和区块链等先进的加密技术,提出了一种专门为智能电网环境设计的新型身份验证和密钥协议。我们的协议确保设备之间的相互认证,强大的密钥管理,并抵抗普遍的安全威胁。我们进行了全面的安全分析和性能评估,证明我们的协议增强了安全性,并保持了智能电网实际部署所需的效率。结果表明,与现有解决方案相比,我们的协议在安全性和性能指标方面有了显着改善,使其成为保护智能电网通信的可行有效选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust authentication and key agreement protocol for smart microgrid environment
Integrating advanced communication technologies has significantly enhanced power distribution efficiency, reliability, and sustainability in the evolving landscape of smart microgrids. However, this integration introduces substantial security challenges, particularly concerning authentication and critical agreement processes, which are essential for maintaining the integrity and confidentiality of smart grid communications. This paper presents a novel authentication and key agreement protocol specifically designed for the smart grid environment by incorporating advanced cryptographic techniques such as ECC, physical unclonable functions, and blockchain. Our protocol ensures mutual authentication between devices, robust key management, and resistance to prevalent security threats. We conduct a comprehensive security analysis and performance evaluation, demonstrating that our protocol enhances security and maintains the efficiency necessary for practical deployment in smart grids. The results indicate significant improvements in security and performance metrics compared to existing solutions, establishing our protocol as a viable and effective option for securing smart grid communications.
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来源期刊
Journal of Information Security and Applications
Journal of Information Security and Applications Computer Science-Computer Networks and Communications
CiteScore
10.90
自引率
5.40%
发文量
206
审稿时长
56 days
期刊介绍: Journal of Information Security and Applications (JISA) focuses on the original research and practice-driven applications with relevance to information security and applications. JISA provides a common linkage between a vibrant scientific and research community and industry professionals by offering a clear view on modern problems and challenges in information security, as well as identifying promising scientific and "best-practice" solutions. JISA issues offer a balance between original research work and innovative industrial approaches by internationally renowned information security experts and researchers.
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