基于氧化还原的电阻存储器的纳米固有安全原语

Jeeson Kim
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引用次数: 0

摘要

物理不可克隆功能(PUF)利用其他不理想的非理想性的优点来创建即使使用相同的制造过程也难以复制的物理系统。纳米内在puf使用每个硬件实例的纳米技术可变性作为加密随机性的来源。在各种新兴存储器中,基于氧化还原的电阻式存储器(ReRAM)是提供下一代低成本、低功耗、超小型puf安全解决方案的有希望的候选者。这篇综述展示了各种基于reram的PUF实现及其关键特性。我们比较了它们的性能,并讨论了为了有效地实现PUF,应该关注ReRAM的哪些属性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nano-intrinsic security primitives with redox-based resistive memory
Physical unclonable function (PUF) exploits advantages of otherwise undesirable non-idealities to create physical systems that are difficult to copy even with the same manufacturing process. Nano-intrinsic PUFs use the variability of nanotechnology per hardware instance as a source of cryptographic randomness. Among various emerging memories, redox-based resistive memory (ReRAM) is a promising candidate for providing next-generation low-cost, low-power, ultra-small PUF-based security solutions. This review shows various ReRAM-based PUF implementations and their key features. We compare their performance and discuss which properties of ReRAM to focus on for effective PUF implementation.
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CiteScore
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