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首页> 外文期刊>IEICE Electronics Express >Novel TCAM-based PUF with improved reliability for hardware-entangled security
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Novel TCAM-based PUF with improved reliability for hardware-entangled security

机译:新型基于TCAM的PUF,具有更高的可靠性,可确保硬件安全

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摘要

Physical unclonable functions (PUFs) are the circuits that extract a number of unique chip signatures determined by random physical variations from fabrication. Since they are able to securely store and generate secret keys, PUFs allow to bootstrap the hardware-based implementation of an information security. This manuscript proposes a novel ternary content addressable memory based PUF (TCAM-PUF) for secure embedded systems. The PUF responses are simulated under various conditions, which are start-up values of TCAM cells. The results show that the proposed TCAM-PUF provides higher reliability and uniqueness than SRAM-PUF, which is one of the widely-used memory cell-based weak PUFs. According to our simulation, our TCAM-PUF provides an inter-chip and intra-chip hamming distance of 49.5% and 3.5% (on average), respectively and uniformity of 49.8% (on average).
机译:物理不可克隆功能(PUF)是从制造中提取随机物理变化确定的许多唯一芯片签名的电路。由于它们能够安全地存储和生成秘密密钥,因此PUF允许引导基于硬件的信息安全性实施。该手稿提出了一种用于安全嵌入式系统的新颖的基于三态内容可寻址存储器的PUF(TCAM-PUF)。在各种条件下模拟PUF响应,这些条件是TCAM单元的启动值。结果表明,所提出的TCAM-PUF比SRAM-PUF具有更高的可靠性和唯一性,而SRAM-PUF是基于存储单元的弱PUF之一。根据我们的仿真,我们的TCAM-PUF提供的芯片间和芯片内汉明距离分别为49.5%和3.5%(平均),均匀度为49.8%(平均)。

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