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Exploiting metastability and thermal noise to build a re-configurable hardware random number generator

机译:利用亚稳定性和热噪声来构建可重新配置的硬件随机数生成器

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While pseudo random number generators based on computational complexity are widely used for most of cryptographic applications and probabilistic simulations, the generation of true random numbers based on physical randomness is required to guarantee the advanced security of cryptographic systems. In this paper we present a method to exploit manufacturing variations, metastablity, and thermal noise in integrated circuits to generate random numbers. This metastability based physical random number generator provides a compact and low-power solution which can be fabricated using standard IC manufacturing processes. Test-chips were fabricated in TSMC 0.18um process and experimental results show that the generated random bits pass standard randomness tests successfully. The operation of the proposed scheme is robust against environmental changes since it can be re-calibrated to new environmental conditions such as temperature and power supply voltage.
机译:虽然基于计算复杂性的伪随机数生成器已广泛用于大多数密码应用程序和概率模拟,但仍需要基于物理随机性生成真实随机数,以保证密码系统的高级安全性。在本文中,我们提出了一种利用集成电路中的制造偏差,亚稳态和热噪声来生成随机数的方法。这种基于亚稳定性的物理随机数发生器提供了一种紧凑且低功耗的解决方案,可以使用标准的IC制造工艺进行制造。测试芯片采用台积电(TSMC)0.18um工艺制造,实验结果表明,所生成的随机位成功通过了标准随机性测试。由于可以将其重新校准到新的环境条件(例如温度和电源电压),因此该方案的操作对环境变化具有鲁棒性。

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