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One time password authentication scheme based on elliptic curves for Internet of Things (IoT)

机译:一种基于椭圆曲线的一次密码认证方案(IOT)

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摘要

Establishing end-to-end authentication between devices and applications in Internet of Things (IoT) is a challenging task. Due to heterogeneity in terms of devices, topology, communication and different security protocols used in IoT, existing authentication mechanisms are vulnerable to security threats and can disrupt the progress of IoT in realizing Smart City, Smart Home and Smart Infrastructure, etc. To achieve end-to-end authentication between IoT devices/applications, the existing authentication schemes and security protocols require a two-factor authentication mechanism. Therefore, as part of this paper we review the suitability of an authentication scheme based on One Time Password (OTP) for IoT and proposed a scalable, efficient and robust OTP scheme. Our proposed scheme uses the principles of lightweight Identity Based Elliptic Curve Cryptography scheme and Lamport's OTP algorithm. We evaluate analytically and experimentally the performance of our scheme and observe that our scheme with a smaller key size and lesser infrastructure performs on par with the existing OTP schemes without compromising the security level. Our proposed scheme can be implemented in real-time IoT networks and is the right candidate for two-factor authentication among devices, applications and their communications in IoT.
机译:在Internet Internet(IoT)之间建立设备和应用之间的端到端身份验证是一个具有挑战性的任务。由于IOT中使用的设备,拓扑,通信和不同安全协议的异质性,现有的身份验证机制容易受到安全威胁的影响,并且可以扰乱IOT在实现智能城市,智能家庭和智能基础设施等中的进展。实现结束-to -to-end身份验证在IoT设备/应用程序之间,现有的身份验证方案和安全协议需要双因素认证机制。因此,作为本文的一部分,我们根据IOT的一次密码(OTP)来审查认证方案的适用性,并提出了可扩展,高效且坚固的OTP方案。我们所提出的方案利用基于轻量级标识的椭圆曲线加密方案和Lamport的OTP算法原理。我们在经过分析和实验中评估我们的方案的性能,并观察我们具有较小密钥大小和较小基础设施的方案在现有OTP方案的情况下执行,而不会影响安全级别。我们所提出的方案可以在实时IOT网络中实现,是在IOT中的设备,应用程序及其通信之间的双因素身份验证的合适候选者。

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