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A 354F2 Leakage-Based Physically Unclonable Function With Lossless Stabilization Through Remapping for Low-Cost IoT Security

机译:一种354F2基于泄漏的物理不可渗透功能,通过Remapping进行无损稳定,以便低成本IOT安全性

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摘要

A leakage-based physically unclonable function (PUF) is proposed to provide cost-effective security for Internet of Things (IoT) devices. By exploiting the exponential dependence of subthreshold leakage current on a transistor's threshold voltage variations, a response key bit is generated with only 354F(2) silicon area. Moreover, to improve stability without discarding challenge-response pairs (CRPs), a novel lossless stabilization scheme called "remapping" is proposed. The proposed leakage-based PUF exhibited a 3.87% native unstable bit ratio (UBR) and 0.426% native bit error rate (BER). With the proposed remapping and 11-bit temporal majority voting applied, the BER and UBR are significantly improved to 47 and 538 ppm, respectively, achieving stability as high as a conventional trimming approach without any key losses.
机译:提出了一种泄漏的物理上不可渗透功能(PUF),为物联网(物联网)设备提供了成本有效的安全性。通过利用亚阈值漏电流对晶体管的阈值电压变化的指数依赖性,仅利用354F(2)芯片区域产生响应键位。此外,为了提高稳定性而不会丢弃攻击响应对(CRP),提出了一种新的无损稳定方案,称为“重新映射”。所提出的基于泄漏的PUF表现出3.87%的天然不稳定位比(UBR)和0.426%的天然误码率(BER)。随着所施加的拟议重新映射和11位时间大多数投票,BER和UBR分别显着提高到47和538ppm,实现稳定性,与传统的修剪方法一样高,没有任何关键损失。

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