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Efficient Identity-Based Public Auditing Scheme for Cloud Storage from Lattice Assumption

机译:基于格假设的基于身份的高效云存储公共审计方案

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摘要

In this paper, we propose a post-quantum secure cloud storage system supporting privacy-preserving public auditing scheme from lattice assumption. In our public auditing scheme, we introduce a third party auditor (TPA), which can efficiently audit the cloud storage data, bringing no additional on-line burden to the users. We utilize preimage sample able functions to realize our lattice-based signature, thus can be considered as random masking to make sure the TPA can not recover the primitive data blocks of the users. Based on the inhomogeneous small integer solution assumption (ISIS), our public auditing scheme is proved secure against the data lost attacks and tamper attacks from the cloud service providers. To the best of our knowledge, we construct the first identity-based public auditing for secure cloud storage from lattice assumption, which is an interesting stepping stone in the post-quantum cryptographic communication.
机译:本文提出了一种基于格假设的支持量子保护后公共审计方案的后量子安全云存储系统。在我们的公共审核方案中,我们引入了第三方审核员(TPA),它可以有效地审核云存储数据,而不会给用户带来额外的在线负担。我们利用原像采样功能来实现基于格的签名,因此可以将其视为随机掩蔽,以确保TPA无法恢复用户的原始数据块。基于不均匀的小整数解决方案假设(ISIS),我们的公共审计方案被证明可抵抗云服务提供商的数据丢失攻击和篡改攻击。据我们所知,我们从晶格假设构建了第一个基于身份的公共审计,用于安全的云存储,这是后量子密码通信中有趣的垫脚石。

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