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QCAPUF: QCA-based physically unclonable function as a hardware security primitive

机译:QCAPUF:基于QCA的物理不可克隆功能,作为硬件安全性原语

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Physically unclonable functions (PUFs) are increasingly used as innovative security primitives to provide the hardware authentication and identification as well as the secret key generation based on unique and random variations in identically fabricated devices. Security and low power have appeared to become two crucial necessities to modern designs. As an emerging nanoelectronic technology, a quantum-dot cellular automata (QCA) can achieve ultra-low power consumption as well as an extremely small area for implementing digital designs. However, there are various classes of permanent defects that can happen during the manufacture of QCA devices. The recent extensive research has been focused on how to eliminate errors in QCA structures resulting from fabrication variances. By a completely different vision, to turn this disadvantage into an advantage, this paper presents a novel QCA-based PUF (QCAPUF) architecture to exploit the unique physical characteristics of fabricated QCA cells in order to produce different hardware fingerprint instances. This architecture is composed of proposed logic and interconnect blocks that have critical vulnerabilities and perform unexpected logical operations. The behaviour of QCAPUF is thoroughly analysed through physical relations and simulations. Results confirm that the proposed QCAPUF has state of the art PUF characteristics in the QCA technology. This paper will serve as a basis for further research into QCA-based hardware security primitives and applications.
机译:物理上不可克隆的功能(PUF)越来越多地用作创新的安全原语,以基于相同制造的设备中的唯一和随机变化提供硬件身份验证和标识以及秘密密钥生成。安全性和低功耗似乎已成为现代设计的两个关键条件。作为一种新兴的纳米电子技术,量子点自动机(QCA)可以实现超低功耗,并且实现数字设计的面积非常小。但是,在QCA器件的制造过程中可能会发生各种永久性缺陷。最近的广泛研究集中在如何消除由于制造差异而导致的QCA结构中的误差。为了以完全不同的眼光将这一缺点转化为优势,本文提出了一种新颖的基于QCA的PUF(QCAPUF)架构,以利用制造的QCA单元的独特物理特性来生成不同的硬件指纹实例。此体系结构由建议的逻辑和互连模块组成,这些模块具有严重漏洞并执行意外的逻辑操作。通过物理关系和模拟对QCAPUF的行为进行了全面分析。结果证实,提出的QCAPUF在QCA技术中具有最新的PUF特性。本文将作为进一步研究基于QCA的硬件安全原语和应用程序的基础。

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