首页> 外文会议>International Conference on Field-Programmable Logic and Applications >CREATING UNIQUE IDENTIFIERS ON FIELD PROGRAMMABLE GATE ARRAYS USING NATURAL PROCESSING VARIATIONS
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CREATING UNIQUE IDENTIFIERS ON FIELD PROGRAMMABLE GATE ARRAYS USING NATURAL PROCESSING VARIATIONS

机译:使用自然处理变体在现场可编程门阵列上创建唯一标识符

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In this paper, we proposes the concept of creating a circuit identifier, or digital fingerprint, for field programmable gate arrays (FPGAs). The digital fingerprint is a function of the natural variations in the semiconductor manufacturing process that cannot be duplicated or forged. The proposed digital fingerprint allows the use of any arbitrary of nodes internal to the circuit or the circuit outputs as monitoring locations. Changes in the signal on a selected node or output can be quantified digitally over a period of time or at a specific instance of time. Two monitoring methods are proposed, one using cumulative observation of the nodes and the other samples the nodes based on a signal transition. Two monitoring methods were validated on a small sample of twenty Xilinx Virtex-II Pro FPGAs, where both methods successfully created unique identifiers for each FPGA.
机译:在本文中,我们提出了创建电路标识符或数字指纹的概念,或数字指纹,用于现场可编程门阵列(FPGA)。数字指纹是无法复制或伪造的半导体制造过程中的自然变化的函数。所提出的数字指纹允许使用电路内部内部的任何节点或电路输出作为监视位置。在所选节点或输出上的信号的变化可以在一段时间内或在特定时间的时间内以数字方式量化。提出了两种监视方法,使用节点的累积观察和其他基于信号转换来对节点进行采样。在二十Xilinx Virtex-II Pro FPGA的小样本上验证了两种监测方法,其中两种方法成功为每个FPGA成功创建了唯一的标识符。

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