新兴的基于fpga的物联网设备的新型跨平台物理不可克隆功能

Dipnarayan Das, Sourav Roy, Mahabub Hasan Mahalat, B. Sen
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引用次数: 0

摘要

物理不可克隆函数(PUF)已被证明是一种很有前途的特定于硬件的安全原语。由于硅的内在物理变化,PUF的物理结构易于制造,但难以复制。然而,由于PUF设计的平台依赖性,从技术采用的角度来看,基于fpga的PUF仍然处于初级阶段。在此背景下,本文提出了一种新的基于fpga的平台无关PUF架构,该架构消除了基于延迟的PUF实现中对放置约束的需求。此外,提议的跨平台RO (CPRO) PUF设计在新FPGA系列中实现后无需验证,使其更有希望进行技术转让。该设计已在90nm、45nm和28nm工艺的赛灵思FPGA系列中实现和测试。与之前的发现相反,可以观察到提议的PUF是高度灵活的,利用了更低的足迹。实验结果表明,该方法在保持理想安全性的前提下,具有接近理想的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Cross-Platform Physically Unclonable Function for Emerging FPGA-based IoT Devices
Physically Unclonable Function (PUF) has been proven as a promising hardware-specific security primitive. The physical structure of PUF is considered to be easy to manufacture but hard to replicate due to intrinsic physical variation of silicon. Nevertheless, FPGA-based PUFs are still mostly infancy from the perspective of technology adoption due to platform dependence properties in the PUF design. In this context, this paper presents a novel platform-independent FPGA-based PUF architecture that eliminates the requirement of placement constraints in delay-based PUF implementation. Additionally, the proposed Cross-Platform RO (CPRO) PUF design need not be validated after implementation in new FPGA families, making it more promising for technology transfer. The design has been implemented and tested in Xilinx FPGA families of 90 nm, 45 nm, and 28 nm technology. In contrast to earlier findings, it is observable that the proposed PUF is highly flexible, leveraging a lower footprint. Experimental results show a close to the ideal performance of the implementation while keeping the desired security intact.
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