Апаратно-програмний генератор випадкових чисел на основі напівпровідникової фотоматриці та логічних комбінацій клітинних автоматів

Primary binary sequences obtained directly from semiconductor photodiode arrays of standard CMOS webcams exhibit significant non-uniform frequency distributions and high inter-frame correlation. Experimental measurements reveal critical defects, including anomalous byte gaps in the [0...25] range an...

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Збережено в:
Бібліографічні деталі
Опубліковано в:Технологія та конструювання в електронній апаратурі
Дата:2026
Випуск:1
Сторінки:32-37
ISSN:3083-6549
Автори та афіліації:
  • Serhii Yanushevskyi — Yurii Fedkovych Chernivtsi National University, Ukraine — ORCID: 0009-0007-3426-2868
  • Yuriy Dobrovolsky — Yurii Fedkovych Chernivtsi National University, Ukraine
Ключові слова:генератор псевдовипадкових чисел, passive filter, auto-oscillator, квантовий генератор випадкових чисел, computer vision, hybrid filter, deterministic chaos generator, пост- квантова криптографія, neurochip, пост квантова криптографія
Автори: Yanushevskyi, Serhii, Dobrovolsky, Yuriy
Формат: Стаття
Мова:Українська
Опубліковано: PE "Politekhperiodika", Book and Journal Publishers 2026
Теми:
Онлайн доступ:https://www.tkea.com.ua/index.php/journal/article/view/TKEA2026.1.32
Теги: Додати тег
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Назва журналу:Technology and design in electronic equipment
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Technology and design in electronic equipment
Опис
Резюме:Primary binary sequences obtained directly from semiconductor photodiode arrays of standard CMOS webcams exhibit significant non-uniform frequency distributions and high inter-frame correlation. Experimental measurements reveal critical defects, including anomalous byte gaps in the [0...25] range and a 30% correlation in darkness. Primary binary sequences obtained directly from semiconductor photodiode arrays of standard CMOS webcams exhibit significant non-uniform frequency distributions and high inter-frame correlation. Experimental measurements reveal critical defects, including anomalous byte gaps in the [0...25] range and a 30% correlation in darkness. The primary entropy source is the stochastic photocurrent of the array elements, captured at 25 frames per second and transformed into discrete numbers via analog-to-digital conversion. Local statistical correlations are eliminated using post-processing based on logical combinations of one-dimensional cellular automata. The developed algorithm combines chaotic rule-switching and a multi-component XOR-MIX combination of equivalent primitives.. For high computational efficiency, a lightweight algorithm for adaptive control of evolution iterations based on express root-mean-square deviation control is introduced. The low complexity of bitwise Boolean operations enables real-time data processing on personal computers and embedded microcontrollers. Experimental results show that the developed algorithm provides a real-time generation speed of 47.8 Mbps, with an additional CPU load of only 0.3% and a frame latency of less than 0.1 ms. The normalized stream completely eliminates inherent hardware defects, successfully passing all 15 NIST STS test groups with a stable proportion of over 96%, confirming the cryptographic strength of the method and its high suitability for modern information security applications.
ISSN:3083-6549
DOI:10.15222/TKEA2026.1.32