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首页> 外文期刊>International journal of web services research >A Well-Organized Safeguarded Access on Key Propagation by Malleable Optimization in Blend With Double Permutation
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A Well-Organized Safeguarded Access on Key Propagation by Malleable Optimization in Blend With Double Permutation

机译:结合双置换的可塑性优化对密钥传播进行有组织的有保障的访问

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摘要

With the rapid developments occurring in cloud computing and services, there has been a growing trend of using the cloud for large-scale data storage. This has led to a major security dispute on data handling. Thus, the process can be overcome by utilizing an efficient shielded access on a key propagation (ESAKP) technique along with an adaptive optimization algorithm for password generation and performing double permutation. The password generation is done by adaptive ant lion optimization (AALO) which tackles the problem of ineffiency. This build has stronger security which needs an efficient selection property by eliminating the worst fit in each iteration. The optimized password is utilized by an adaptive vignere cipher for efficient key generation in which adaptiveness is employed to prevent the dilemma of choosing the first letter of alphabet which in turn reduces the computation time and improves the security. Additionally, there is a need to encrypte the symmetric key asymmetrically with a Elliptic Curve-Diffie Hellman algorithm (EC-DH) with a double stage permutation which produces a scrambling form of data adding security to the data.
机译:随着云计算和服务的快速发展,使用云进行大规模数据存储的趋势已经越来越大。这导致了有关数据处理的重大安全争议。因此,可以通过利用密钥传播(ESAKP)技术上的有效屏蔽访问以及用于密码生成和执行双重置换的自适应优化算法来克服该过程。密码生成是通过自适应蚁群优化(AALO)完成的,该算法解决了效率低下的问题。此构建具有更强的安全性,通过消除每次迭代的最差拟合,需要高效的选择属性。优化的密码由自适应导航器密码用于有效的密钥生成,其中采用自适应性来防止选择第一个字母的困境,从而减少了计算时间并提高了安全性。另外,需要使用具有双阶段置换的椭圆曲线-Diffie Hellman算法(EC-DH)非对称地加密对称密钥,这会产生加扰形式的数据,从而为数据增加安全性。

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