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DNA Cryptography and Deep Learning using Genetic Algorithm with NW algorithm for Key Generation

机译:DNA密码术和利用NW算法遗传算法的关键代算法

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Cryptography is not only a science of applying complex mathematics and logic to design strong methods to hide data called as encryption, but also to retrieve the original data back, called decryption. The purpose of cryptography is to transmit a message between a sender and receiver such that an eavesdropper is unable to comprehend it. To accomplish this, not only we need a strong algorithm, but a strong key and a strong concept for encryption and decryption process. We have introduced a concept of DNA Deep Learning Cryptography which is defined as a technique of concealing data in terms of DNA sequence and deep learning. In the cryptographic technique, each alphabet of a letter is converted into a different combination of the four bases, namely; Adenine (A), Cytosine (C), Guanine (G) and Thymine (T), which make up the human deoxyribonucleic acid (DNA). Actual implementations with the DNA don't exceed laboratory level and are expensive. To bring DNA computing on a digital level, easy and effective algorithms are proposed in this paper. In proposed work we have introduced firstly, a method and its implementation for key generation based on the theory of natural selection using Genetic Algorithm with Needleman-Wunsch (NW) algorithm and Secondly, a method for implementation of encryption and decryption based on DNA computing using biological operations Transcription, Translation, DNA Sequencing and Deep Learning.
机译:加密不仅是应用复杂数学和逻辑的科学,可以设计强大的方法来隐藏称为加密的数据,还可以检索原始数据,称为解密。密码学的目的是在发送者和接收器之间传输消息,使得窃听器无法理解它。为了实现这一目标,不仅我们需要强大的算法,而且是一个强大的密钥和强大的加密和解密过程的概念。我们介绍了DNA深度学习密码学的概念,被定义为在DNA序列和深度学习方面隐藏数据的技术。在密码技术中,字母的每个字母表被转换为四个基础的不同组合,即;腺嘌呤(A),胞嘧啶(C),鸟嘌呤(G)和胸腺嘧啶(T),其构成人脱氧核糖核酸(DNA)。 DNA的实际实现不超过实验室水平并且昂贵。为了在数字电平上提出DNA计算,本文提出了简单且有效的算法。在拟议的工作中,我们首先介绍了基于使用针对针对Wunsch(NW)算法的遗传算法的自然选择理论的方法及其实现,其次,基于DNA计算的加密和解密方法生物作业转录,翻译,DNA测序和深度学习。

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