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An ultra-low overhead LUT-based PUF for FPGA

机译:用于FPGA的超低高架LUT的PUF

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摘要

Physical unclonable function (PUF) utilizes the unexpected intrinsic manufacturing process variations of device to generate unique bit streams for authentication, key generation and random number generation. It has emerged as a promising primitive to address various challenges in hardware security. Traditional PUF schemes, such as arbiter PUF and ring oscillator (RO) PUF, do not have efficient implementations on FPGA and thus limit their usage as FPGA becomes the dominate design platform for today's emerging applications. In this paper, we propose a novel look-up table (LUT) shift register (SR) based PUF scheme for FPGA. This PUF incurs ultra1-low resource overhead, only two SLICEs to produce a 128-bit signature in our experimentation on XILINX Virtex-5 FPGA. Meanwhile, the PUF response are good in terms of uniqueness and robustness. At the same temperature, the proposed PUF has a 99%+ reliability on its response. When temperature changes between 25°C and 75°C, the robustness drops, but is still over 90%.
机译:物理不可克隆功能(PUF)利用装置的意外特性制造工艺的变化,以产生用于认证,密钥生成和随机数生成唯一的位流。它被出现为一个有希望的原始原始,以解决硬件安全的各种挑战。传统的PUF方案,例如仲裁器PUF和环形振荡器(RO)PUF,在FPGA上没有有效的实现,因此将其使用限制为今天的新兴应用程序的主导设计平台。在本文中,我们提出了一种基于FPGA的新型查找表(LUT)移位寄存器(SR)PUF方案。这种PUF会引发超大资源开销,只有两片在我们的Xilinx Virtex-5 FPGA的实验中产生128位签名。同时,PUF响应在唯一性和鲁棒性方面都是良好的。在相同的温度下,所提出的PUF在其响应上具有99%+可靠性。当温度在25°C和75°C之间变化时,鲁棒性掉落,但仍然超过90%。

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