Random Number Generator Based on Miniature Microbial Fuel Cells

Celal Erbay, Salih Ergün
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Abstract

Random number generators (RNG) are important hardware primitives for many fields including secure communication, cryptology, weather forecast, gambling that needs unpredictable and non-deterministic random bit sequences. Various entropy sources are available to generate random numbers and generation rate depends on the application that needs to use random numbers. In this work, a new approach is given to generate random bits based on miniature microbial fuel cells that convert electrochemical energy into electricity. Microorganisms inside of the microbial fuel cell play a critical role to generate electricity therefore it is unpredictable what they will produce. An output voltage generated by the microbial fuel cells used to produce random bits then it was shown that they were successfully passed the NIST 800-22 statistical randomness tests after the XOR corrector post-processing method. The proposed approach can be especially used in environmental applications that need secure data transfer and bioreactors that have to securely send critical data to headquarter.
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基于微型微生物燃料电池的随机数发生器
随机数生成器(RNG)是许多领域的重要硬件原语,包括安全通信、密码学、天气预报、赌博,这些领域需要不可预测和不确定的随机比特序列。可以使用各种熵源来生成随机数,生成速率取决于需要使用随机数的应用程序。在这项工作中,提出了一种基于微型微生物燃料电池产生随机比特的新方法,该电池将电化学能量转化为电能。微生物燃料电池内部的微生物在发电中起着至关重要的作用,因此无法预测它们将产生什么。微生物燃料电池产生的输出电压用于产生随机比特,然后经过异或校正后处理方法,表明它们成功地通过了NIST 800-22统计随机性测试。所提出的方法特别适用于需要安全数据传输的环境应用和必须将关键数据安全地发送到总部的生物反应器。
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