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首页> 外文期刊>Journal of computer sciences >METADATA DRIVEN EFFICIENT KEY GENERATION AND DISTRIBUTION IN CLOUD SECURITY | Science Publications
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METADATA DRIVEN EFFICIENT KEY GENERATION AND DISTRIBUTION IN CLOUD SECURITY | Science Publications

机译:云安全性中元数据驱动的有效密钥生成和分发科学出版物

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> With rapid development of cloud computing to a greater extent IT industries outsource their sensitive data at cloud data storage location. To keep the stored data con?dential against untrusted cloud service providers, a natural way is to store only encrypted data in the cloud severs and providing an efficient access control mechanism using a competent cipher key-Cmxn, which is becoming a promising cryptographic solution. In this proposed model the cipher key is generated based on attributes of metadata. The key problems of this approach includes, the generation of cipher key-Cmxn and establishing an access control mechanism for the encrypted data using cipher key, where keys cannot be revoked without the involvement of data owner and the Metadata Data Server (MDS), hence makes data owner feels comfortable about the data stored. From this study, we propose a novel Metadata driven efficient key generation and distribution policies for cloud data security system by exploiting the characteristic of the metadata stored. Our design enforces security by providing two novel features. 1. Generation of Cipher key-Cmxn using modified feistel network, which holds good for the avalanche effect as each round of the feistel function, depends on the previous round. 2. A novel key distribution policy is designed where the encryption and decryption keys cannot be compromised without the involvement of data owner and the Metadata Data Server (MDS), hence makes data owner comfortable about the data stored. We have implemented a security model that incorporates our ideas and evaluated the performance and scalability of the secured model.
机译: >随着云计算的快速发展,IT行业在云数据存储位置将敏感数据外包。为了使存储的数据与不受信任的云服务提供商保持机密,一种自然的方法是仅将加密的数据存储在云服务器中,并使用有效的密码密钥C mxn 提供有效的访问控制机制,这正成为有希望的密码解决方案。在该提出的模型中,密码密钥是基于元数据的属性生成的。这种方法的关键问题包括:生成密码密钥C mxn ,以及使用密码密钥建立对加密数据的访问控制机制,其中,如果没有数据所有者和用户的参与,密钥将无法撤销。因此,元数据数据服务器(MDS)使数据所有者对存储的数据感到满意。通过这项研究,我们通过利用存储的元数据的特征,提出了一种新的元数据驱动的高效密钥生成和分发策略,用于云数据安全系统。我们的设计通过提供两个新颖的功能来增强安全性。 1.使用修改后的feistel网络生成密码密钥-C mxn ,由于每轮feistel函数都依赖于前一轮,因此雪崩效果很好,因此雪崩效果很好。 2.设计了一种新颖的密钥分发策略,其中在没有数据所有者和元数据数据服务器(MDS)参与的情况下,不会破坏加密和解密密钥,因此使数据所有者对所存储的数据感到满意。我们已经实现了一种安全模型,该模型结合了我们的想法,并评估了安全模型的性能和可伸缩性。

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