Evolutionary algorithm solution of the multiple conjugacy search problem in groups, and its applications to cryptography

M. J. Craven, H. C. Jimbo
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引用次数: 10

Abstract

Abstract. We consider the multiple conjugacy search problem over a subclass of partially commutative groups and experimentally attack it with a genetic algorithm hybridised with a “length attack”. We detail symbolic computation of words over the groups, constructing functions which measure certain statistics of those words. By experimentation, the hybrid algorithm is shown to be effective, showing that the standard conjugacy search problem is harder than the multiple conjugacy search problem for our groups. Moreover, some intuitive methods of increasing problem difficulty are overcome by the algorithm, and in fact make the problem easier to solve. We show our algorithm is efficient, comparing well with traditional approaches in groups that are statistically similar. Finally, via “approximation” of braid groups by our subclass, we consider implications of the attack on certain cryptosystems, pointing to further work in the discipline of group-theoretic cryptography.
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群中多重共轭搜索问题的进化算法及其在密码学中的应用
摘要考虑部分可交换群上的多重共轭搜索问题,用混合“长度攻击”的遗传算法进行了实验求解。我们详细介绍了组上单词的符号计算,构建了测量这些单词的某些统计量的函数。通过实验,证明了混合算法的有效性,表明标准共轭搜索问题比多重共轭搜索问题更难。此外,该算法克服了一些直观的增加问题难度的方法,实际上使问题更容易求解。我们证明了我们的算法是有效的,在统计相似的组中与传统方法相比效果很好。最后,通过我们的子类对辫子群的“近似”,我们考虑了对某些密码系统的攻击的含义,指出了在群论密码学学科中的进一步工作。
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