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Mapping private keys into one public key using binary matrices and masonic cipher: Caesar cipher as a case study

机译:使用二进制矩阵和共济会密码将私钥映射为一个公钥:以凯撒密码为例

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摘要

Caesar cipher is a mono alphabetic cipher. It is also a type of substitution cipher in which each letter in the plaintext is shifted a certain number of places down the alphabet. However, Caesar cipher method did not last long because of its simplicity and lack of communication security. Therefore, we believe that strengthen the key mechanism should increase its complexity against the various cryptanalysis attacks. This paper proposes an enhanced Caesar cipher method through adopting two private keys that are tied to the character positions (i.e. odd and even) for encryption and/or decryption. The two private keys are mapped into one public key to be transferred to the recipient. At the end, the results show that the new cryptosystem is inevitable to cryptanalysis attack. And the cipher text is reduced in size and thus, memory space. The public key generation process is proven to be a one-way function utilizing binary matrices that are generated and shared between the two communicating parties. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:凯撒密码是单字母密码。这也是一种替代密码,其中明文中的每个字母都在字母表中向下移动了一定数量的位置。然而,由于其简单性和缺乏通信安全性,Caesar密码方法并没有持续很长时间。因此,我们认为,加强密钥机制应增加其针对各种密码分析攻击的复杂性。本文通过采用两个与字符位置(即奇数和偶数)相关的私钥来进行加密和/或解密,提出了一种增强的Caesar密码方法。这两个私钥被映射为一个公钥,以传送给接收者。最后,结果表明,新的密码系统不可避免地受到密码分析攻击。并且,密文的大小减小,从而减少了存储空间。利用两个通信方之间生成和共享的二进制矩阵,公钥生成过程被证明是一种单向函数。版权所有(c)2016 John Wiley&Sons,Ltd.

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