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Improving performance of FPGA-based SR-latch PUF using Transient Effect Ring Oscillator and programmable delay lines

机译:使用瞬态效应环形振荡器和可编程延迟线改善基于FPGA的SR锁存PUF的性能

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摘要

In this paper, we propose a new structure of SR-Latch Physically Unclonable Function (PUF) based on Transient Effect Ring Oscillator (TERO). Our proposed TERO-based scheme combines the features of two different programmable delay lines (PDLs) and generates the response bits by comparing the number of oscillations of the SR-Latches during the metastable state. The proposed scheme reduces the impact of environmental noise to increase the reliability of the response bits. Also, our proposed area-efficient PUF architecture has low complexities and hence consumes low power consumption as compared to the counterparts. Moreover, we investigate the impact of systematic variation on the uniqueness of the response bits. We have used an optimized placement (in term of area cost) for the proposed structure and implemented our proposed scheme on the Spartan3 FPGA boards. The implemented structure demonstrates considerable performance metrics such as the uniqueness of 49.32%. In addition, the proposed structure provides higher reliability when tuned with PDLs. Hence, the need for complex error correcting codes is reduced. This makes the scheme appropriate for low-cost authentication and cryptographic applications.
机译:在本文中,我们提出了一种基于瞬态效应环形振荡器(TERO)的SR锁存物理不可克隆功能(PUF)的新结构。我们提出的基于TERO的方案结合了两个不同的可编程延迟线(PDL)的功能,并通过比较亚稳态期间SR锁存器的振荡次数来生成响应位。所提出的方案减少了环境噪声的影响,以增加响应位的可靠性。而且,我们提出的面积有效的PUF体系结构具有较低的复杂度,因此与同类方法相比具有较低的功耗。此外,我们调查了系统变化对响应位唯一性的影响。我们对拟议的结构使用了优化的布局(就面积成本而言),并在Spartan3 FPGA板上实施了拟议的方案。所实现的结构展示了可观的性能指标,例如49.32%的唯一性。另外,所提出的结构在与PDL一起调谐时可提供更高的可靠性。因此,减少了对复杂的纠错码的需求。这使该方案适合于低成本的身份验证和加密应用程序。

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