论文标题
Scytale-进化的密码系统
Scytale -- An Evolutionary Cryptosystem
论文作者
论文摘要
随着量子计算的出现以及现代系统的计算和处理能力方面的其他进步,需要开发新的陷阱门功能,这些功能将作为新一代加密方案的基础。本文探讨了使用可逆的蜂窝自动机(RCA)的概念来探讨一种潜在的陷阱门 - 特别是,小动物的规则在Margolus社区中建立。提出的块加密算法讨论了如何操纵敏感数据并有效地转换为二维位序列,可以使用RCA的规则和私钥在合理运行时迭代地进化,以实现理想的加密水平。性能基准和分析结果例证了所提出的加密算法对不同形式的攻击的影响。
With the advent of quantum computing, and other advancements in computation and processing capabilities of modern systems, there arises a need to develop new trapdoor functions that will serve as the foundation for a new generation of encryption schemes. This paper explores the possibility of one such potential trapdoor function using concepts stemming from Reversible Cellular Automata (RCA) -- specifically, the Critter's Rule set up in a Margolus Neighborhood. The proposed block encryption algorithm discusses how sensitive data can be manipulated and converted efficiently into a two dimensional sequence of bits, that can be iteratively evolved using the rules of the RCA and a private key to achieve a desirable level of encryption within a reasonable runtime. The performance benchmark and analysis results exemplify how well the proposed encryption algorithm stands against different forms of attacks.