Stability of Characteristics of Physical Random Number Generators

М. О. Пикуза, С. Ю. Михневич, А. Ю. Сенкевич, M. O. Pikuza, S. Mikhnevich, Aliona YU. Siankevich
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Abstract

The development of technologies leads to the need of revising the methods used to obtain cryptographic keys. The randomness parameters of sequences generated by physical random sequence generators are affected by the physical parameters of the recording equipment and the environment. The requirements for the randomness of the sequence, when passing the binary test, are obtained. It is shown that as the sequence length increases, the requirements for possible deviations from the equiprobable distribution of 0 and 1 increase. The randomness stability of the sequences generated by the generator based on the study of photons is estimated. The oscillator under study consists of an LED and a compact silicon photomultiplier designed to detect low-power light radiation. Possible physical processes leading to the deterioration of the randomness of sequences are shown. The possibility of using a generator of random numerical sequences based on a small-sized silicon photomultiplier for cryptographic purposes is estimated.
物理随机数发生器特性的稳定性
技术的发展导致需要修改用于获得密码密钥的方法。由物理随机序列生成器生成的序列的随机性参数受到记录设备和环境的物理参数的影响。当通过二进制测试时,获得了对序列随机性的要求。结果表明,随着序列长度的增加,对0和1等概率分布的可能偏差的要求增加。基于对光子的研究,估计了生成器生成的序列的随机性稳定性。研究中的振荡器由一个LED和一个设计用于检测低功率光辐射的紧凑型硅光电倍增管组成。显示了可能导致序列随机性恶化的物理过程。估计了使用基于小型硅光电倍增管的随机数字序列生成器进行加密的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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审稿时长
8 weeks
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