Marwan Samiha, Shawish Ahmed, Nagaty Khaled
Faculty of Informatics and Computer Science, The British University in Egypt, Egypt.
Faculty of Informatics and Computer Science, The British University in Egypt, Egypt; Faculty of Computer and Information Science, Ain Shams University, Egypt.
Biosystems. 2016 Dec;150:110-118. doi: 10.1016/j.biosystems.2016.08.013. Epub 2016 Sep 12.
Information security can be achieved using cryptography, steganography or a combination of them, where data is firstly encrypted using any of the available cryptography techniques and then hid into any hiding medium. Recently, the famous genomic DNA has been introduced as a hiding medium, known as DNA steganography, due to its notable ability to hide huge data sets with a high level of randomness and hence security. Despite the numerous cryptography techniques, to our knowledge only the vigenere cipher and the DNA-based playfair cipher have been combined with the DNA steganography, which keeps space for investigation of other techniques and coming up with new improvements. This paper presents a comprehensive analysis between the DNA-based playfair, vigenere, RSA and the AES ciphers, each combined with a DNA hiding technique. The conducted analysis reports the performance diversity of each combined technique in terms of security, speed, hiding capacity in addition to both key size and data size. Moreover, this paper proposes a modification of the current combined DNA-based playfair cipher technique, which makes it not only simple and fast but also provides a significantly higher hiding capacity and security. The conducted extensive experimental studies confirm such outstanding performance in comparison with all the discussed combined techniques.
信息安全可以通过密码学、隐写术或两者结合来实现,即首先使用任何可用的密码技术对数据进行加密,然后将其隐藏到任何隐藏介质中。最近,著名的基因组DNA已被用作一种隐藏介质,即DNA隐写术,因为它具有显著的能力,能够以高度的随机性和安全性隐藏大量数据集。尽管有众多的密码技术,但据我们所知,只有维吉尼亚密码和基于DNA的普莱费尔密码与DNA隐写术相结合,这为研究其他技术和提出新的改进留下了空间。本文对基于DNA的普莱费尔密码、维吉尼亚密码、RSA密码和AES密码进行了全面分析,每种密码都与一种DNA隐藏技术相结合。所进行的分析报告了每种组合技术在安全性、速度、隐藏容量以及密钥大小和数据大小方面的性能差异。此外,本文提出了对当前基于DNA的普莱费尔密码组合技术的改进,使其不仅简单快速,而且提供了显著更高的隐藏容量和安全性。与所有讨论的组合技术相比,所进行的广泛实验研究证实了这种卓越的性能。