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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >TMACS: A Robust and Verifiable Threshold Multi-Authority Access Control System in Public Cloud Storage
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TMACS: A Robust and Verifiable Threshold Multi-Authority Access Control System in Public Cloud Storage

机译:TMACS:公共云存储中的可靠且可验证的阈值多权限访问控制系统

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摘要

Attribute-based Encryption (ABE) is regarded as a promising cryptographic conducting tool to guarantee data owners’ direct control over their data in public cloud storage. The earlier ABE schemes involve only one authority to maintain the whole attribute set, which can bring a single-point bottleneck on both security and performance. Subsequently, some multi-authority schemes are proposed, in which multiple authorities separately maintain disjoint attribute subsets. However, the single-point bottleneck problem remains unsolved. In this paper, from another perspective, we conduct a threshold multi-authority CP-ABE access control scheme for public cloud storage, named TMACS, in which multiple authorities jointly manage a uniform attribute set. In TMACS, taking advantage of () threshold secret sharing, the master key can be shared among multiple authorities, and a legal user can generate his/her secret key by interacting with any authorities. Security and performance analysis results show that TMACS is not only verifiable secure when less than authorities are compromised, but also robust when no less than authorities are alive in the system. Furthermore, by efficiently combining the traditional multi-authority scheme with TMACS, we construct a hybrid one, which satisf- es the scenario of attributes coming from different authorities as well as achieving security and system-level robustness.
机译:基于属性的加密(ABE)被认为是一种有前途的加密工具,可确保数据所有者直接控制其在公共云存储中的数据。早期的ABE方案仅涉及维护整个属性集的权限,这可能带来安全性和性能上的单点瓶颈。随后,提出了一些多权限方案,其中多个权限分别维护不相交的属性子集。但是,单点瓶颈问题仍然没有解决。在本文中,从另一个角度来看,我们针对公共云存储实施了阈值多权限CP-ABE访问控制方案,称为TMACS,其中多个权限共同管理统一的属性集。在TMACS中,利用()阈值秘密共享,可以在多个授权机构之间共享主密钥,并且合法用户可以通过与任何授权机构进行交互来生成他/她的秘密密钥。安全性和性能分析结果表明,TMACS不仅在受到权限不足的威胁时可以验证安全性,而且在系统中存在不少于权限的情况下也很健壮。此外,通过有效地将传统的多授权方案与TMACS结合,我们构建了一种混合方案,该方案既满足了来自不同机构的属性,又实现了安全性和系统级的鲁棒性。

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