基于振环的TRNG行为模型在FPGA上实现

Knut Wold, Slobodan V. Petrovic
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引用次数: 17

摘要

了解真随机数生成器(TRNG)的行为对于确定这种设计的安全性非常重要。本文研究了一种在现场可编程门阵列(FPGA)中实现的基于多个振荡器环的TRNG设计,以确定该设计中的真正随机性或熵的数量。提出了一种基于过渡区域命中数产生熵的TRNG模型。该模型考虑到振荡环的抖动不是恒定的,而是增加或累积,如果环不在靠近过渡点的区域采样,振荡环的输出从逻辑0变为逻辑1,反之亦然。在MatLab中实现了TRNG模型,并进行了仿真,展示了不同设计参数的影响以及FPGA器件特性对随机质量的影响。
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Behavioral model of TRNG based on oscillator rings implemented in FPGA
Understanding the behavior of a true random number generator (TRNG) is important in order to determine the security of such a design. In this paper, an investigation of a TRNG design based on several oscillator rings implemented in a field programmable gate array (FPGA) is performed in order to determine the amount of true randomness or entropy in this design. A model of the TRNG based on the number of hits in the transition regions generating entropy is proposed. This model takes into account the fact that the jitter of an oscillator ring is not constant, but increases or accumulates if the ring is not sampled in a region close to a transition point where the oscillator ring output changes from logic 0 to logic 1 or vice versa. The model of the TRNG is implemented in MatLab and simulations are performed showing the influence of different design parameters and also the influence of properties of the FPGA device on quality of randomness.
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