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CNPUF: A Carbon Nanotube-based Physically Unclonable Function for secure low-energy hardware design

机译:CNPUF:一种基于碳纳米管的物理不可渗透功能,可用于安全低能量硬件设计

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Physically Unclonable Functions (PUFs) are used to provide identification, authentication and secret key generation based on unique and unpredictable physical characteristics. Carbon Nanotube Field Effect Transistors (CNFETs) were shown to have excellent electrical and unique physical characteristics and are promising candidates to replace silicon transistors in future Very Large Scale Integration (VLSI) designs. We present Carbon Nanotube PUF (CNPUF), the first PUF design that takes advantage of unique CNFET characteristics. CNPUF achieves higher reliability against environmental variations and increased resistance against modeling attacks. Furthermore, CNPUF has a considerable power and energy reduction in comparison to previous ultra-low power PUF designs of 89.6% and 98%, respectively. Additionally, CNPUF allows power-security tradeoff.
机译:物理可不可渗透的函数(PUF)用于提供基于唯一和不可预测的物理特性的识别,认证和密钥生成。碳纳米管场效应晶体管(CNFET)被示出具有优异的电气和独特的物理特性,并且是希望在未来非常大规模集成(VLSI)设计中更换硅晶体管的候选者。我们呈现碳纳米管PUF(CNPUF),这是利用独特的CNFET特性的PUF设计。 CNPUF对环境变化的可靠性提高,抵抗模拟攻击的抗性提高。此外,与以前的超低功率PUF设计分别为89.6%和98%,CNPUF具有相当大的功率和能量降低。此外,CNPUF允许电源安全权衡。

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