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首页> 外文期刊>IEEE transactions on information forensics and security >Homogeneous and Heterogeneous Feed-Forward XOR Physical Unclonable Functions
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Homogeneous and Heterogeneous Feed-Forward XOR Physical Unclonable Functions

机译:同质异质前馈异或物理不可克隆函数

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摘要

Physical unclonable functions (PUFs) are hardware security primitives that are used for device authentication and cryptographic key generation. Standard XOR PUFs typically contain multiple standard arbiter PUFs as components, and are more secure than standard arbiter PUFs or feed-forward (FF) arbiter PUFs (FF PUFs). This paper proposes design of feed-forward XOR PUFs (FFXOR PUFs) where each component PUF is a FF PUF. Various homogeneous and heterogeneous FFXOR PUFs are presented and evaluated in terms of four fundamental properties of PUFs: uniqueness, attack-resistance, reliability and randomness. Certain key issues pertaining to XOR PUFs such as their vulnerability to machine learning attacks and instability in responses are investigated. Other important challenges like the lack of uniqueness in FF PUFs and the asymmetry in FPGA arbiter PUFs are addressed and it is shown that FFXOR PUFs can naturally overcome these problems. It is shown that heterogeneous FFXOR PUFs (i.e., FFXOR PUFs with non-identical components) can be resilient to state-of-the-art machine learning attacks. We also present systematic reliability analysis of FFXOR PUFs and demonstrate that soft-response thresholding can be used as an effective countermeasure to overcome the degraded reliability bottleneck. Observations from simulations are further verified through hardware implementation of 64-bit FFXOR PUFs on Xilinx Artix-7 FPGA.
机译:物理不可克隆功能(PUF)是用于设备身份验证和加密密钥生成的硬件安全原语。标准XOR PUF通常包含多个标准仲裁器PUF作为组件,并且比标准仲裁器PUF或前馈(FF)仲裁器PUF(FF PUF)更安全。本文提出了前馈XOR PUF(FFXOR PUF)的设计,其中每个组件PUF为FF PUF。根据PUF的四个基本属性,提出并评估了各种同质和异质FFXOR PUF:唯一性,抗攻击性,可靠性和随机性。研究了与XOR PUF相关的某些关键问题,例如它们对机器学习攻击的脆弱性和响应的不稳定性。解决了其他重要挑战,例如FF PUF中缺乏唯一性和FPGA仲裁器PUF中的不对称性,事实证明FFXOR PUF可以自然克服这些问题。事实表明,异构FFXOR PUF(即具有不相同组件的FFXOR PUF)可以抵御最新的机器学习攻击。我们还介绍了FFXOR PUF的系统可靠性分析,并证明了软响应阈值可以用作克服退化的可靠性瓶颈的有效对策。通过Xilinx Artix-7 FPGA上64位FFXOR PUF的硬件实现,可以进一步验证来自仿真的观察结果。

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