支持云数据公共完整性验证的高效动态更新

Jia Wan, Shijie Jia, Limin Liu, Yang Zhang
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引用次数: 0

摘要

云存储是一种日益流行的云计算服务,它可以提供方便的按需数据外包服务,减轻个人和组织维护本地数据的负担。但是,用户并不完全信任云服务提供商。原因是用户失去了对云数据的物理控制,云服务提供商在遇到数据丢失事故时为了声誉可能会隐瞒数据的状态。因此,如何高效地验证云数据的完整性对用户来说至关重要。本文提出了一种支持云数据高效动态更新的公共完整性验证方案,该方案基于Merkle哈希树链表(MHT-list),这是我们设计的一种新型二维数据结构。这种结构利用多个默克尔哈希树(mht)和一个链表来记录云服务提供商端的数据信息。同时,我们利用mht表的结构优势,使我们的方案在动态更新和完整性验证方面比现有方案更高效。此外,我们还通过具体的广泛实验正式证明了所提出方案的安全性,并对方案的性能进行了评价。结果表明,该方案有效地实现了云数据公共完整性验证的动态更新,在计算量和通信开销方面均优于现有方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Supporting Efficient Dynamic Update in Public Integrity Verification of Cloud Data
Cloud storage is an increasingly popular service of cloud computing, which can provide convenient on-demand data outsourcing services and release the burden of maintaining local data for both individuals and organizations. However, the cloud service providers are not fully trusted by the users. The reason is that the users lose physical control of their cloud data, and the cloud service providers may conceal the status of the data when encountering data loss accidents for reputation. Therefore, it is critical for users to efficiently verify the integrity of cloud data.In this paper, we propose a public integrity verification scheme to support efficient dynamic update of cloud data based on Merkle Hash Tree linked list (MHT-list), which is a novel two-dimensional data structure we designed. This structure utilizes multiple merkle hash trees (MHTs) and a linked list to record data information at the cloud service provider side. Meanwhile, we exploit the structural advantages of the MHT-list to make our scheme more efficient in dynamic update and integrity verification than existing works. Moreover, we formally prove the security of the proposed scheme and evaluate the performance of our scheme by concrete extensive experiments. The results demonstrate that our proposed scheme achieves dynamic update effectively in public integrity verification of cloud data, and outperforms the previous works in computation and communication overhead.
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