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Privacy-Preserving Public Auditing Scheme for Shared Data with Supporting Multi-function

机译:支持多功能的共享数据隐私保护公共审计方案

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摘要

The most common concerns for users in cloud storage are data integrity, confidentiality and availability, so various data integrity auditing schemes for cloud storage have been proposed in the past few years, some of which achieve privacy-preserving public auditing, data sharing and group dynamic, or support data dynamic. However, as far as we know, until now yet there doesn't exist a practical auditing scheme which can simultaneously realize all the functions above; In addition, in all the existing schemes, Block Authentication Tag (BAT) is adopted by data owner to achieve data integrity auditing; nevertheless, it's a arduous task to compute BATs for the resource-constrained data owner. In this paper, we propose a novel privacy-preserving public auditing scheme for shared data in the cloud, which can also support data dynamic operations and group dynamic. Our scheme has the following advantages:(1) we introduce proxy signature into the existing auditing scheme to reduce the cloud user's computation burden; (2) by introducing a Lagrange interpolating polynomial, our scheme realizes the identity's privacy-preserving without increasing computation cost and communication overhead, moreover it makes group dynamic simple;(3) it can realize the practical and secure dynamic operations of shared data bycombining the Merkle Hash Tree and index-switch table which is built by us; (4) to protect the data privacy and resist the active attack, the cloud storage server hides the actual proof information by inserting its private key in producing proof information process. Theoretical analysis demonstrates our scheme's security.
机译:云存储用户最常关注的问题是数据完整性,机密性和可用性,因此在过去几年中提出了各种针对云存储的数据完整性审核方案,其中一些方案实现了隐私保护的公共审核,数据共享和组动态,或支持动态数据。但是,据我们所知,到目前为止,还没有一种可以同时实现上述所有功能的实用审计方案。另外,在所有现有方案中,数据所有者都采用了块验证标签(BAT)来实现数据完整性审核。但是,为资源受限的数据所有者计算BAT是一项艰巨的任务。在本文中,我们针对云中的共享数据提出了一种新颖的隐私保护公共审计方案,该方案还可以支持数据动态操作和组动态。我们的方案具有以下优点:(1)将代理签名引入现有的审计方案中,以减轻云用户的计算负担; (2)通过引入Lagrange插值多项式,我们的方案在不增加计算成本和通信开销的情况下实现了身份的隐私保护,而且使组动态变得简单;(3)通过结合以下方法可以实现共享数据的实用,安全的动态操作我们构建的Merkle哈希树和索引切换表; (4)为了保护数据隐私并抵抗主动攻击,云存储服务器通过在生成证明信息过程中插入其私钥来隐藏实际的证明信息。理论分析证明了我们方案的安全性。

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