Modified RC4 Algorithm for Improve Data Protection in Cloud Environment

Ethar Abdul Wahhab Hachim, Thekra Abbas, M. Gaata
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引用次数: 2

Abstract

The rapid growth of digital technologies that depending on cloud computing has seriously increased the threats related to information security. This will certainly pose a major threat to the trust of users of the cloud environment. For this reason, the use of algorithms like Rivest Ciphers 4 (RC4) algorithms to encrypt data and then store in the cloud became essential issue. So, because of the simplicity and ease of RC4 algorithm and its suitability to encrypt most data form efficiently, it has been widely used. But, the RC4 algorithm suffers from some weaknesses in both of Key Schedule Algorithm (KSA) and Pseudo-Random Generation Algorithm (PRGA) stages. As, the intruder may be able to follow the traces and thus retrieve the key based on the internal state or the stream of output. There were a lot of modifications in many literature reviews to improve the security and performance of the RC4 algorithm. In this paper, the focus was placed on improving the RC4 algorithm in both of (KSA) and (PRGA) in order to increase the security level. The performance of our improved RC4 algorithm was tested and evaluated by increasing the randomness of the generated key. The experimental results prove that high security level for output based on the security average of ciphertext with various keys and various files size. Thus, get more security level for the personal data that is stored in the cloud.
改进RC4算法,提高云环境下的数据保护
以云计算为依托的数字技术的快速发展,严重增加了与信息安全相关的威胁。这无疑会对云环境用户的信任构成重大威胁。因此,使用Rivest Ciphers 4 (RC4)算法等算法对数据进行加密,然后将其存储在云中就成为了关键问题。因此,由于RC4算法的简便性和对大多数数据形式的有效加密,它得到了广泛的应用。但是,RC4算法在密钥调度算法(KSA)和伪随机生成算法(PRGA)两个阶段都存在一定的缺陷。因此,入侵者可能能够跟踪跟踪,从而根据内部状态或输出流检索密钥。为了提高RC4算法的安全性和性能,在很多文献综述中都做了很多修改。本文重点对(KSA)和(PRGA)中的RC4算法进行了改进,以提高安全级别。改进后的RC4算法的性能通过增加生成密钥的随机性进行了测试和评估。实验结果证明,基于不同密钥和不同文件大小的密文的安全平均值,输出具有较高的安全级别。因此,为存储在云中的个人数据提供更高的安全级别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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