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Cloud Audit: A Data Integrity Verification Approach for Cloud Computing

机译:云审计:云计算的数据完整性验证方法

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Cloud computing is the fastest growing and promising field in the sector of service provision. It is a very trendy situation for security implementation in the Cloud. Thus, security restrictions are increasing on users and service providers as the growth of Cloud environment. The purpose of this paper is to suggest a better and efficient integrity verification technique for data (referred as “Cloud Audit”). The building blocks of our technique are a variant of the Paillier homomorphic cryptography system with homomorphic tag and combinatorial batch codes. A Paillier Homomorphic Cryptography (PHC) system used to obtain homomorphic encryption on data blocks. Homomorphic tags along with the Paillier cryptography system assigns a special verifiable value to each data block, which helps us in unleashing data operations on this block. Combinatorial batch codes are used to assign and store integral data into different distributed cloud sever. To demonstrate our approach, we have implemented an application based on Hadoop and MapReduce framework. We have tested this application based on various parameters. Effectiveness of the proposed method has been shown by the experimental results. Our method has shown large improvement over the other modern methods.
机译:云计算是服务提供领域中增长最快且前景广阔的领域。在云中实施安全性是非常流行的情况。因此,随着云环境的增长,对用户和服务提供商的安全限制也在增加。本文的目的是提出一种更好,更高效的数据完整性验证技术(称为“云审计”)。我们技术的基础是Paillier同态密码系统的一种变体,具有同态标记和组合批处理代码。 Paillier同态密码术(PHC)系统,用于对数据块进行同态加密。同态标记与Paillier密码系统一起为每个数据块分配了一个特殊的可验证值,这有助于我们释放对该块的数据操作。组合批处理代码用于分配积分数据并将其存储到不同的分布式云服务器中。为了演示我们的方法,我们已经实现了一个基于Hadoop和MapReduce框架的应用程序。我们已经根据各种参数测试了此应用程序。实验结果表明了该方法的有效性。与其他现代方法相比,我们的方法已显示出很大的改进。

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