Authentication of IoT device with the enhancement of One-time Password (OTP)

Sharon Chan Suet Yan, Alice Tang Su Wei, Jie Hui Bong, Quor Ling Teh, Shanmugapiriya Sivalingam, S. Khoo, Tahmid Mutashim Nafy
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引用次数: 3

Abstract

The Robust and Energy Efficient Authentication Protocol works for Industrial Internet of Things. The Internet of Things (IoT) is an arising innovation and expected to give answers for different modern fields. The IoT enable connection of physical devices all around the world to the internet by collecting and sharing critical and real-time data among each other. The increment of devices increases the computational cost during data transmission between devices and towards the internet. In this paper we proposed a solution that is a multi-factor authentication protocol to enhance the protocol proposed by Li et al. For Industrial IoT by adding One Time Password (OTP) after the biometric information of the user is checked by the Gateway Node (GWN) to be able to tackle additional network attack aside from those that are overcome by Li et al. scheme. Our contribution for this project is, we proposed the solution that a multi-factor authentication protocol to enhance the protocol proposed. For Industrial IoT by adding One Time Password (OTP) after the biometric information of the user is checked by the Gateway Node (GWN) to be able to tackle additional network attack aside from those that are overcome. The idea of adding OTP is inspired by where they scheme correlates to biometric of user as well. Our proposal is lower cost than the three protocols regarding authentication overhead and computational cost perspectives. Challenges and future directions of this paper examined the security shortcomings of a client confirmation convention for WSN, which is as proposed by Chang and Le. To address the normal security shortcomings of past protocols, we proposed a strong and energy effective three-factor authentication protocol for WSN.
增强一次性密码(OTP)的物联网设备认证
鲁棒节能认证协议适用于工业物联网。物联网(IoT)是一项新兴的创新,有望为不同的现代领域提供答案。物联网通过相互收集和共享关键和实时数据,使世界各地的物理设备连接到互联网。设备数量的增加增加了设备之间和向互联网传输数据的计算成本。本文提出了一种多因素认证协议的解决方案,对Li等人提出的协议进行了改进。对于工业物联网,通过在网关节点(GWN)检查用户的生物特征信息后添加一次性密码(OTP),能够解决Li等人方案克服的网络攻击之外的其他网络攻击。我们对这个项目的贡献是,我们提出了一个多因素认证协议来增强协议提出的解决方案。对于工业物联网,在网关节点(GWN)检查用户的生物特征信息后添加一次性密码(OTP),以便能够处理除已克服的网络攻击之外的其他网络攻击。添加OTP的想法的灵感来自于他们的方案与用户的生物特征相关联的地方。在身份验证开销和计算成本方面,我们的建议比这三种协议的成本更低。本文的挑战和未来方向研究了Chang和Le提出的WSN客户端确认约定的安全缺陷。针对以往协议存在的安全缺陷,提出了一种强大且节能的无线传感器网络三因素认证协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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