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Design and Evaluation of a Printed Analog-Based Differential Physical Unclonable Function

机译:印刷的基于模拟的微分物理不可克隆函数的设计和评估

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A physical unclonable function (PUF) is a hardware circuit that produces a random sequence based on its manufacturing-induced intrinsic characteristics. In the past decade, silicon-based PUFs have been extensively studied as a security primitive for identification and authentication. The emerging field of printed electronics (PE) enables novel application fields in the scope of the Internet of Things (IoT) and smart sensors. In this paper, we design and evaluate a printed differential circuit PUF (DiffC-PUF). The simulation data are verified by Monte Carlo analysis. Our design is highly scalable while consisting of a low number of printed transistors. Furthermore, we investigate the best operating point by varying the PUF challenge configuration and analyzing the PUF security metrics in order to achieve high robustness. At the best operating point, the results show areliability of 98.37 & x0025; and a uniqueness of 50.02 & x0025;, respectively. This analysis also provides useful and comprehensive insights into the design of hybrid or fully printed PUF circuits. In addition, the proposed printed DiffC-PUF core has been fabricated with electrolyte-gated field-effect transistor technology to verify our design in hardware.
机译:物理不可克隆功能(PUF)是一种硬件电路,可根据其制造引起的固有特性生成随机序列。在过去的十年中,基于硅的PUF已被广泛研究为识别和认证的安全原语。印刷电子(PE)的新兴领域实现了物联网(IoT)和智能传感器范围内的新颖应用领域。在本文中,我们设计并评估了印刷差分电路PUF(DiffC-PUF)。通过蒙特卡洛分析验证了仿真数据。我们的设计具有高度可扩展性,同时包含少量印刷晶体管。此外,我们通过更改PUF挑战配置并分析PUF安全性指标来研究最佳操作点,以实现高鲁棒性。在最佳工作点,结果显示可靠性为98.37&x0025;的唯一性分别为50.02和x0025;。该分析还为混合或全印刷PUF电路的设计提供了有用而全面的见解。此外,建议的印刷DiffC-PUF磁芯已采用电解质门控场效应晶体管技术制造,以验证我们的硬件设计。

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