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Random stream cipher as a PUF-like identity in FPGA environment

机译:FPGA环境中作为PUF身份的随机流密码

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Digital Secret Unknown Cipher (SUC) has been proposed in the last decade targeting to counteract the drawbacks of the traditional analog Physical Unclonable Functions (PUF). The SUCs, as pure-digital units, exhibit consistent operation during the whole digital unit's lifetime. This makes SUCs as PUF alternatives attractive for practical creation of clone-resistant units for a broad spectrum of applications especially in automotive and other mass-product cases. In this paper, we propose a novel SUC creation scenario as a random stream cipher to be embedded in Microsemi SmartFusion®2 System on Chip (SoC) FPGAs. The resulting cipher as a Key Stream Generators (KSG) is T-functions-based creating individual and randomized secret-key-streams which are individual for each unit. The proposed SUC-based Random Stream Cipher (RSC-SUC) is a lightweight SUC realization optimized for the SmartFusion®2 SoC FPGA technology. The security analysis and hardware complexity issues of the resulting RSC-SUC structures are also discussed and evaluated.
机译:在过去的十年中已经提出了数字秘密未知密码(SUC),其目的是消除传统的模拟物理不可克隆功能(PUF)的缺点。 SUC作为纯数字单元,在整个数字单元的生命周期内均表现出一致的运行状态。这使得SUC作为PUF替代品对实际创建耐克隆单元具有广泛的应用吸引力,特别是在汽车和其他批量产品的情况下。在本文中,我们提出了一种新颖的SUC创建方案作为随机流密码,该方案将被嵌入在MicrosemiSmartFusion®2片上系统(SoC)FPGA中。作为密钥流生成器(KSG)生成的密码是基于T函数的,创建的每个密钥单元的个体和随机密钥流都是独立的。提议的基于SUC的随机流密码(RSC-SUC)是针对SmartFusion®2SoC FPGA技术进行了优化的轻量级SUC实现。还讨论和评估了所得RSC-SUC结构的安全性分析和硬件复杂性问题。

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