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A Bias and Correlation Free True Random Number Generator Based on Quantized Oscillator Phase under Sub-Harmonic Injection Locking

机译:基于副谐波注射锁定量化振荡阶段的偏置和相关无缝数发生器

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In this work, we demonstrated a novel oscillator phase based true random number generator (TRNG) design that can be high speed, and bias and correlation free. We are showing that: i) the arbitrary phase difference between the unsynchronized oscillator and injected synchronization signal is collapsed into two random and stable phases under subharmonic injection locking (SHIL); ii) the quantized oscillator phases under SHIL are fully symmetric and memoryless, generating bias and correlation free random bits; iii) the proposed oscillator phase TRNG is a generic design, independent of the oscillator platform. Thus, a CMOS ring oscillator based TRNG is also designed and evaluated. All of the generated random numbers pass the National Institute of Standards and Technology (NIST) tests and exhibit negligible bias and correlation from statistical analysis. Therefore, the proposed solution provides a competitive alternative to the existing on-chip TRNG design toolbox.
机译:在这项工作中,我们展示了一种基于新的振荡器阶段的真正随机数发生器(TRNG)设计,可以高速,并无偏置和相关性。我们表明:i)未同步振荡器和注入的同步信号之间的任意相位差在次谐喷射锁定(SHIL)下折叠成两个随机稳定的相; ii)SHIL下的量化振荡器阶段是完全对称和无核的,产生偏差和相关随机位; III)所提出的振荡器阶段TNG是一种仿制式设计,独立于振荡器平台。因此,还设计和评估了基于CMOS环形振荡器的TRNG。所有生成的随机数通过国家标准和技术研究所(NIST)测试,并且展示差异可以忽略不计的偏差和相关性。因此,所提出的解决方案为现有的片上Trng设计工具箱提供了竞争替代品。

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