基于动态DNA编码和非对称密码系统的DNA密码技术

Md. Rafiul Biswas, K. R. Alam, A. Akber, Y. Morimoto
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引用次数: 14

摘要

为了提高数据的保密性,提出了一种基于动态DNA编码和非对称密码系统的DNA密码技术。其关键思想是:将明文分成固定大小的块,使用非对称密码系统对每个块进行加密,最后使用动态DNA编码合并每个块的密文。为了生成块,明文的字符被转换成等价的ASCII值,并将其分割成有限的值。现在对每个数据块进行加密,采用非对称密码系统,并将密文转换为其等效的二进制值。然后这个二进制值被转换成DNA碱基。最后,为了合并每个块,生成了足够的随机字符串。这里要解决所需的随机字符串的数量,动态DNA编码是利用斐波那契序列生成的。因此,有限块、非对称密码系统、随机字符串和动态DNA编码的使用提高了数据的安全性。为了评估加解密所需的时间,我们采用RSA、ElGamal和Paillier密码系统进行了实证分析。所提出的技术适用于任何密码学的使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A DNA cryptographic technique based on dynamic DNA encoding and asymmetric cryptosystem
This paper proposes a new DNA cryptographic technique based on dynamic DNA encoding and asymmetric cryptosystem to increase the level of secrecy of data. The key idea is: to split the plaintext into fixed sized chunks, to encrypt each chunk using asymmetric cryptosystem and finally to merge the ciphertext of each chunk using dynamic DNA encoding. To generate chunks, characters of the plaintext are transformed into their equivalent ASCII values and split it into finite values. Now to encrypt each chunk, asymmetric cryptosystem is applied and the ciphertext is transformed into its equivalent binary value. Then this binary value is converted into DNA bases. Finally to merge each chunk, sufficient random strings are generated. Here to settle the required number of random strings, dynamic DNA encoding is exploited which is generated using Fibonacci series. Thus the use of finite chunks, asymmetric cryptosystem, random strings and dynamic DNA encoding increases the level of security of data. To evaluate the encryption-decryption time requirement, an empirical analysis is performed employing RSA, ElGamal and Paillier cryptosystems. The proposed technique is suitable for any use of cryptography.
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