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Increasing robustness of data encryption standard by integrating DNA cryptography

机译:通过集成DNA加密技术提高数据加密标准的鲁棒性

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摘要

Encryption has become a necessity of life, especially in the field of exchanging and transmitting data through transmission media, such as internet, wireless networks, mobile networks, bluetooth, and infrared. The deoxyribonucleic acid (DNA) cryptography is a very promising approach which is shown to be efficient in computation, storage, and transmission. In this paper, we introduce a new technique for encryption called DNA-DES that is more robust than traditional data encryption standard (DES). The proposed technique integrates concepts derived from DNA, ribonucleic acid, and nucleic acids to increase the key space and number of available permutations of traditional DES. The theoretical and experimental analysis show that the proposed DNA-DES method is efficient in computation, storage, and transmission. The security analysis proves that DNA-DES has high confidential strength against brute-force and cryptanalysis attacks.
机译:加密已经成为生活的必需品,特别是在通过传输介质(例如Internet,无线网络,移动网络,蓝牙和红外线)交换和传输数据的领域中。脱氧核糖核酸(DNA)加密是一种非常有前途的方法,已证明在计算,存储和传输方面非常有效。在本文中,我们介绍了一种称为DNA-DES的加密新技术,该技术比传统的数据加密标准(DES)更强大。所提出的技术整合了源自DNA,核糖核酸和核酸的概念,以增加传统DES的密钥空间和可用排列的数量。理论和实验分析表明,提出的DNA-DES方法在计算,存储和传输方面是有效的。安全分析证明,DNA-DES具有抵御暴力和密码分析攻击的高度机密性。

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