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Honey Encryption based Hybrid Cryptographic Algorithm:A Fusion Ensuring Enhanced Security

机译:基于Honey加密的混合密码算法:确保增强安全性的融合

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Providing high security to data exchange is one of the most primary concerns with fast evolution in communication technology. So, a Hybrid cryptographic algorithm is proposed where, Rivest Cipher 5 (RC5) is used for encryption and decryption of data and Honey Encryption (HE) is used for secret key exchange, which is a major challenge of symmetric cryptography. In this paper, number of rounds of RC5 is varied and its strength is studied based on randomness, considering avalanche effect. Time complexity of RC5 is also analyzed and increasing strength is chosen over time complexity as RC5 shows very slight increase in time when number of rounds is increased. Additionally, HE involves Distribution Transforming Encoder (DTE) and generation of honey-words. HE acts an additional layer of protection for RC5 cryptographic algorithm. HE is password based and it gives fake messages if any intrusion is detected and have utilized this concept to protect sharing of secret key. Both algorithms are efficiently integrated; obtained results clearly justify that greater number of rounds provide more randomness and hence better security and key exchange is done securely. Thus, proposed Hybrid cryptographic algorithm efficiently provides enhanced security as it involves double encryption.
机译:在通信技术的快速发展中,为数据交换提供高安全性是最主要的问题之一。因此,提出了一种混合密码算法,其中,Rivest Cipher 5(RC5)用于数据的加密和解密,而Honey Encryption(HE)用于密钥交换,这是对称加密的主要挑战。在本文中,RC5的弹数是可变的,并且在考虑雪崩效应的基础上,基于随机性研究了它的强度。还对RC5的时间复杂度进行了分析,并选择了强度随时间增加的强度,因为当增加回合数时RC5显示出时间上的微小增加。此外,HE还涉及分布转换编码器(DTE)和蜜字的生成。 HE为RC5加密算法提供了额外的保护层。 HE是基于密码的,如果检测到任何入侵,它会发出伪造的消息,并利用此概念来保护秘密密钥的共享。两种算法均有效集成。获得的结果清楚地证明,更多的回合可以提供更多的随机性,因此可以更好地进行安全性和密钥交换。因此,提出的混合密码算法有效地提供了增强的安全性,因为它涉及双重加密。

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