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Design of a Low Power Physically Un-clonable Function for Generation of Random Sequence for Hardware Security

机译:用于硬件安全的随机序列生成的低功耗物理上不可克隆的功能设计

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摘要

Physical Un-clonable Function (PUF) is a physical entity that provides secret key or fingerprints in silicon circuits by exploiting the uncontrollable randomness during its manufacturing randomness. It provides a hardware unique signature or identification. Its property of uniqueness comes from its unpredictable way of mapping challenges to responses, even if it was manufactured with the same process. Previous work has mainly focused on novel structures for non-FPGA reconfigurable silicon PUFs which does not need any special fabrication method and which can overcome the limitations of FPGA-based simulations. Their performance was quantified by the inter-chip variations, intra-chip variations and re-configurability tests to meet practical application needs. This paper presents a novel approach of designing a low power non-FPGA feed-forward PUF using double gate MOSFET and also to analyze its parameters such as intra-chip variation, reliability and power.
机译:物理不可克隆功能(PUF)是一种物理实体,通过在制造随机性过程中利用不可控制的随机性来提供硅电路中的秘密密钥或指纹。它提供了硬件唯一的签名或标识。它的独特性来自于将挑战映射到响应的不可预测的方式,即使它是用相同的过程制造的。先前的工作主要集中在不需要FPGA的任何特殊制造方法并且可以克服基于FPGA的仿真的局限性的非FPGA可重构硅PUF的新颖结构上。它们的性能通过芯片间差异,芯片内差异和可重新配置性测试来量化,以满足实际应用的需求。本文提出了一种使用双栅极MOSFET设计低功耗非FPGA前馈PUF的新颖方法,并分析了其参数,例如芯片内变化,可靠性和功耗。

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