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首页> 外文期刊>Microelectronics journal >An ultra-low power, reconfigurable, aging resilient RO PUF for IoT applications
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An ultra-low power, reconfigurable, aging resilient RO PUF for IoT applications

机译:适用于物联网应用的超低功耗,可重构,老化的弹性RO PUF

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摘要

Physically Unclonable Functions (PUF) have emerged as security primitives which can generate high entropy, temper resilient bits for security applications. However, the power budget of the ring oscillator (RO) PUF limits the use of RO PUF in loT applications, in this concern a low power variant of RO PUF is much needed. In this paper, we have presented an ultra-low power, lightweight, configurable RO PUF based on the 4T XOR architecture. The proposed architecture is aging resilient; hence it produces a stable PUF output over the years. Also, it has a large number of challenge-response-pair (CRP) compared to the other architectures, which makes it suitable for chip identification as well as cryptographic key generation. The proposed PUF is implemented on 40 nm CMOS technology, and for the validation of design, we have also implemented on FPGA. The simulation results show that it has a uniqueness of 0.489 and worst-case reliability of 96.43% and 93.15% at 125 degrees C and 1.2 V, respectively. Compared to the conventional RO PUF it consumes 98.06% and 95.47% less dynamic and leakage power, respectively.
机译:物理上不可克隆的功能(PUF)已作为安全原语出现,可以为安全应用生成高熵,回弹力强的位。但是,环形振荡器(RO)PUF的功率预算限制了在loT应用中RO PUF的使用,因此,非常需要RO PUF的低功率变型。在本文中,我们介绍了一种基于4T XOR架构的超低功耗,轻巧,可配置的RO PUF。提议的体系结构具有抗老化能力。因此,多年来,它可产生稳定的PUF输出。而且,与其他体系结构相比,它具有大量的质询-响应对(CRP),这使其适用于芯片识别以及加密密钥生成。拟议的PUF在40 nm CMOS技术上实现,为了验证设计,我们也在FPGA上实现。仿真结果表明,它在125摄氏度和1.2伏时分别具有0.489的唯一性和最坏情况下的可靠性,分别为96.43%和93.15%。与传统的RO PUF相比,其动态功耗和泄漏功率分别降低了98.06%和95.47%。

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