Comparative analysis of enhanced hybrid encryption algorithm with single encryption algorithm

Renuka S. Durge, V. Deshmukh
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Abstract

To accomplish end users data security, it appears that the methods currently used to ensure data security, privacy, integrity, and availability to cloud users are insufficient. An encryption method will be required to guarantee the private preservation of users data while it is in transit or persistent state. The security of cloud data is ensured by a hybrid encryption algorithm that includes the use of the symmetric Advanced Encryption Standard (AES) and an asymmetric RSA algorithm ,combining an asymmetric algorithm (public-key cryptography, or PKC) with a symmetric algorithm (also called private key cryptography), which employs a single key for encryption and decryption, to increase the security of cloud data. Hybird encryption has significant benefits over single encryption in terms of security, speed and computation time. By first encrypting data with AES and then encrypting the AES key with RSA while in the cloud, the suggested method offers a hybrid encryption scheme that improves the security of cloud data. This paper examines various forms of cryptographic encryption and also offers a enchanced hybrid encryption technique for online applications.
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增强混合加密算法与单一加密算法的比较分析
为了实现最终用户的数据安全,目前用于确保云用户的数据安全性、隐私性、完整性和可用性的方法似乎是不够的。需要一种加密方法来保证用户数据在传输或持久状态时的私有保存。云数据的安全性由混合加密算法保证,该算法包括使用对称高级加密标准(AES)和非对称RSA算法,将非对称算法(公钥加密或PKC)与对称算法(也称为私钥加密)相结合,使用单个密钥进行加密和解密,以增加云数据的安全性。混合加密在安全性、速度和计算时间方面比单一加密有显著的优势。该方法首先使用AES对数据进行加密,然后在云中使用RSA对AES密钥进行加密,从而提供了一种混合加密方案,提高了云数据的安全性。本文研究了各种形式的密码加密,并为在线应用程序提供了一种增强的混合加密技术。
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