An optimized DNA based encryption scheme with enforced secure key distribution

被引:0
|
作者
Yunpeng Zhang
Xin Liu
Yongqiang Ma
Liang-Chieh Cheng
机构
[1] University of Houston,Department of Information and Logistics Technology
[2] University of Houston,Department of Computer Science
[3] Xi’an Jiaotong University,undefined
来源
Cluster Computing | 2017年 / 20卷
关键词
DNA cryptography; Symmetric encryption; Hamming code; Block cipher; Maximum length matching; Data security; DNA base sequence;
D O I
暂无
中图分类号
学科分类号
摘要
More and more sensitive information is transmitted and stored in computer networks. Security has become a critical issue. As traditional cryptographic systems are now vulnerable to attacks, DNA based cryptography has been identified as a promising technology because of the vast parallelism and extraordinary information density. While a body of research has proposed the DNA based encryption algorithm, no research has provided solutions to distribute complex and long secure keys. This paper introduces a Hamming code and a block cipher mechanism to ensure secure transmission of a secure key. The research overcomes the limitation on the length of the secure key represented by DNA strands. Therefore it proves that real biological DNA strands are useful for encryption computing. To evaluate our method, we apply the block cipher mechanism to optimize a DNA-based implementation of a conventional symmetric encryption algorithm, described as “yet another encryption algorithm”. Moreover, a maximum length matching algorithm is developed to provide immunity against frequency attacks.
引用
收藏
页码:3119 / 3130
页数:11
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