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Leveraging carbon nanotube technologies in developing Physically Unclonable Function for cyber-physical system authentication

机译:利用碳纳米管技术开发用于网络物理系统认证的物理上不可渗透功能

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Cyber-physical system (CPS) research studies the interactions between the cyber components and the physical components of an integrated communication, computation and control system. It comprises the backbone of various critical infrastructures such as smart energy, transportation, and health care systems. Despite its wide popularity, significant security vulnerabilities exist in the prevailing CPSs. As there are many layers/components in a CPS which interact with each other frequently, it is desirable to leverage authenticated communications among them. This is why Physically Unclonable Function (PUF), which enables the challenge-response authentication scheme, has become popular. This paper proposes a new PUF design based on carbon nanotube (CNT) technologies. As fabrication induced variation manifest strongly in CNT based circuits, they are natural candidates for building highly secure PUFs. Our idea is to use a private key as the seed to generate a pseudo-random signal which will be decomposed into a set of secure pseudo-random basis using Empirical Mode Decomposition (EMD). Subsequently, the proposed PUF design works as generating a signal according to a challenge and projecting it to the above secure pseudo-random basis, resulting in the PUF output response. Clearly, the saliency of our proposed secure pseudo-random EMD projection based CNT PUF design comes from the strong variations in CNT circuits and the secure pseudo-random EMD projection.
机译:网络物理系统(CPS)研究研究网络组件与集成通信,计算和控制系统的物理组件之间的相互作用。它包括各种关键基础设施的骨干,如智能能量,运输和医疗保健系统。尽管具有广泛的人气,但现行的CPS存在严重的安全漏洞。由于CP中的许多层/组件频繁地相互作用,因此希望利用其之间的经过身份验证的通信。这就是为什么物理上不可渗透的功能(PUF),它能够挑战 - 响应身份验证方案变得流行。本文提出了一种基于碳纳米管(CNT)技术的新型PUF设计。作为制造诱导的变化在基于CNT的电路中强烈介绍,它们是建立高度安全PUF的自然候选者。我们的想法是使用私钥作为种子来生成伪随机信号,其使用经验模式分解(EMD)将其分解成一组安全伪随机。随后,所提出的PUF设计作为根据挑战的产生信号,并将其投影到上述安全伪随机基础,从而导致PUF输出响应。显然,我们所提出的安全伪随机EMD投影的CNT PUF设计的显着性来自CNT电路和安全伪随机EMD投影的强变化。

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