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Total Ionizing Dose Effects on a Delay-Based Physical Unclonable Function Implemented in FPGAs

机译:在FPGA中实施的基于延迟的物理不可渗透功能的总电离剂量效应

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摘要

Physical Unclonable Functions (PUFs) are hardware security primitives that are increasingly being used for authentication and key generation in ICs and FPGAs. For space systems, they are a promising approach to meet the needs for secure communications at low cost. To this purpose, it is essential to determine if they are reliable in the space radiation environment. In this work we evaluate the Total Ionizing Dose effects on a delay-based PUF implemented in SRAM-FPGA, namely a Ring Oscillator PUF. Several major quality metrics have been used to analyze the evolution of the PUF response with the total ionizing dose. Experimental results demonstrate that total ionizing dose has a perceptible effect on the quality of the PUF response, but it could still be used for space applications by making some appropriate corrections.
机译:物理不可渗透的函数(PUF)是越来越多地用于IC和FPGA中的身份验证和密钥生成的硬件安全原语。对于空间系统,它们是一个有希望的方法,以满足低成本的安全通信需求。为此目的,必须确定它们是否在空间辐射环境中是可靠的。在这项工作中,我们评估对SRAM-FPGA中实现的基于延迟的PUF的总电离剂量效应,即环形振荡器PUF。已经使用了几项主要质量指标来分析PUF响应的演变与总电离剂量。实验结果表明,总电离剂量对PUF响应的质量具有可感知的效果,但它仍然可以通过制造一些适当的校正来用于空间应用。

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