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SELAMAT:一种用于跨平台工业物联网系统的新型安全轻量级多因素认证方案。

SELAMAT: A New Secure and Lightweight Multi-Factor Authentication Scheme for Cross-Platform Industrial IoT Systems.

作者信息

Khalid Haqi, Hashim Shaiful Jahari, Ahmad Sharifah Mumtazah Syed, Hashim Fazirulhisyam, Chaudhary Muhammad Akmal

机构信息

Department of Computer and Communication Systems Engineering, Faculty of Engineering, Universiti Putra Malaysia, Serdang 43400, Malaysia.

Department of Electrical and Computer Engineering, College of Engineering and Information Technology, Ajman University, Ajman 346, United Arab Emirates.

出版信息

Sensors (Basel). 2021 Feb 18;21(4):1428. doi: 10.3390/s21041428.

Abstract

The development of the industrial Internet of Things (IIoT) promotes the integration of the cross-platform systems in fog computing, which enable users to obtain access to multiple application located in different geographical locations. Fog users at the network's edge communicate with many fog servers in different fogs and newly joined servers that they had never contacted before. This communication complexity brings enormous security challenges and potential vulnerability to malicious threats. The attacker may replace the edge device with a fake one and authenticate it as a legitimate device. Therefore, to prevent unauthorized users from accessing fog servers, we propose a new secure and lightweight multi-factor authentication scheme for cross-platform IoT systems (SELAMAT). The proposed scheme extends the Kerberos workflow and utilizes the AES-ECC algorithm for efficient encryption keys management and secure communication between the edge nodes and fog node servers to establish secure mutual authentication. The scheme was tested for its security analysis using the formal security verification under the widely accepted AVISPA tool. We proved our scheme using Burrows Abdi Needham's logic (BAN logic) to prove secure mutual authentication. The results show that the SELAMAT scheme provides better security, functionality, communication, and computation cost than the existing schemes.

摘要

工业物联网(IIoT)的发展推动了雾计算中跨平台系统的集成,这使得用户能够访问位于不同地理位置的多个应用程序。网络边缘的雾用户与不同雾中的许多雾服务器以及他们之前从未接触过的新加入服务器进行通信。这种通信复杂性给恶意威胁带来了巨大的安全挑战和潜在漏洞。攻击者可能会用一个伪造的边缘设备替换真实设备,并将其认证为合法设备。因此,为防止未经授权的用户访问雾服务器,我们提出了一种针对跨平台物联网系统的新型安全轻量级多因素认证方案(SELAMAT)。所提出的方案扩展了Kerberos工作流程,并利用AES-ECC算法进行高效的加密密钥管理以及边缘节点与雾节点服务器之间的安全通信,以建立安全的相互认证。使用广泛接受的AVISPA工具下的形式化安全验证对该方案进行了安全分析测试。我们使用Burrows Abdi Needham逻辑(BAN逻辑)证明了我们的方案实现了安全的相互认证。结果表明,SELAMAT方案比现有方案提供了更好的安全性、功能性、通信和计算成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ee9/7922923/9d125fcccebb/sensors-21-01428-g001.jpg

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