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A Reliable Data Protection Model based on Re-Encryption Concepts in Cloud Environments

机译:基于云环境重新加密概念的可靠数据保护模型

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摘要

The rapid growth of using cloud-based services in recent years is an undeniable fact as it has increased the efficiency in accessing shared pools of configurable computing resources. However, there are serious concerns about the reliability of this emerging technology and it is anticipated that cloud computing security concerns will be the most important and challenging issue in IT industry. Accordingly, a hybrid re-encryption model has been presented in this paper to ensure data security in cloud computing environments based on the concepts of index classification, time-based procedures, and attributes. Accordingly, data are classified to four main rings based on their attributes. Furthermore, a hybrid ring was established to provide a secure connection between rings by dual encryption process. This is regarding the characteristics of source and destination rings. Protected rings perform the re-encryption process according to four main parameters: time-based, un-authorized authentication, user revocation, and data owner request. In addition, the functionality, security, and scalability of the suggested model were examined by a simulation analysis to find out the strengths of this re-encryption model in comparison with current models. The analysis results show that this model has met defined demands of this research to enhance the reliability and efficiency of data protection in cloud computing environments.
机译:近年来使用基于云的服务的快速增长是一个不可否认的事实,因为它提高了访问可配置计算资源的共享池的效率。然而,对这种新兴技术的可靠性存在严重问题,预计云计算安全问题将是IT行业最重要和最具挑战性的问题。因此,本文已经介绍了混合重新加密模型,以基于索引分类,基于时间的过程和属性的概念来确保云计算环境中的数据安全性。因此,数据基于其属性将数据分为四个主环。此外,建立混合戒指以通过双加密过程提供环之间的安全连接。这是关于源头和目的地环的特征。受保护的戒指根据四个主要参数执行重新加密过程:时间基于,未经授权的身份验证,用户撤销和数据所有者请求。此外,通过模拟分析检查了建议模型的功能,安全性和可扩展性,以便与当前模型相比,找出该重新加密模型的优势。分析结果表明,该模型已达到该研究的明确要求,以提高云计算环境中数据保护的可靠性和效率。

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