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Security primitive design with nanoscale devices: A case study with resistive RAM

机译:纳米级设备的安全性原始设计:电阻式RAM的案例研究

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Inherent stochastic physical mechanisms in emerging nonvolatile memories (NVMs), such as resistive random-access-memory (RRAM), have recently been explored for hardware security applications. Unlike the conventional silicon Physical Unclonable Functions (PUFs) that are solely based on manufacturing process variation, RRAM has some intrinsic randomness in its physical mechanisms that can be utilized as entropy sources; for instance, resistance variation, random telegraph noise, and probabilistic switching behaviors. This paper reviews the challenges and opportunities in building security primitives with emerging devices. In particular, it presents research progress of RRAM-based hardware security primitives, including PUF and True Random Number Generator (TRNG).
机译:最近,针对硬件安全性应用,正在探索新兴的非易失性存储器(NVM)中的固有随机物理机制,例如电阻性随机存取存储器(RRAM)。与仅基于制造工艺变化的常规硅物理不可克隆功能(PUF)不同,RRAM在其物理机制中具有一些固有的随机性,可以用作熵源。例如,电阻变化,随机电报噪声和概率切换行为。本文回顾了使用新兴设备构建安全原语的挑战和机遇。特别是,它介绍了基于RRAM的硬件安全原语的研究进展,包括PUF和真实随机数发生器(TRNG)。

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