Experimental Cryptanalysis of No-equilibrium Chaotic System Based Random Number Generator

Burak Acar, T. Karalar
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Abstract

Chaotic systems have to be carefully designed in critical applications. Therefore, these systems need high-quality cryptanalysis methods to make sure they work securely. In this paper, a three dimensional no-equilibrium chaotic system to produce random number bits is analyzed with giving numerical and experimental results. Generating random numbers/bits is vital in security systems since they require unpredictable values to keep the key securely for the attackers. The master-slave synchronization method is used to present the security weakness of the "novel" no-equilibrium chaotic system with hidden attractors. The no equilibrium chaotic system is analyzed with a scalar time series. The simulation and experimental results demonstrate that random number bits generated through the target chaotic system can be estimated because its randomness is based on deterministic sources.
基于随机数发生器的无平衡混沌系统实验密码分析
在关键应用中必须仔细设计混沌系统。因此,这些系统需要高质量的密码分析方法来确保它们安全工作。本文对产生随机数位的三维非平衡混沌系统进行了分析,并给出了数值和实验结果。生成随机数/位在安全系统中是至关重要的,因为它们需要不可预测的值来保证密钥对攻击者的安全。采用主从同步的方法来描述具有隐藏吸引子的“新型”无平衡混沌系统的安全弱点。用标量时间序列分析了无平衡混沌系统。仿真和实验结果表明,由于目标混沌系统的随机性是基于确定性源的,其产生的随机数位是可以估计的。
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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