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Dynamic-Hash-Table Based Public Auditing for Secure Cloud Storage

机译:基于动态哈希表的公共审计,用于安全云存储

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摘要

Cloud storage is an increasingly popular application of cloud computing, which can provide on-demand outsourcing data services for both organizations and individuals. However, users may not fully trust the cloud service providers (CSPs) in that it is difficult to determine whether the CSPs meet their legal expectations for data security. Therefore, it is critical to develop efficient auditing techniques to strengthen data owners’ trust and confidence in cloud storage. In this paper, we present a novel public auditing scheme for secure cloud storage based on dynamic hash table (DHT), which is a new two-dimensional data structure located at a third parity auditor (TPA) to record the data property information for dynamic auditing. Differing from the existing works, the proposed scheme migrates the authorized information from the CSP to the TPA, and thereby significantly reduces the computational cost and communication overhead. Meanwhile, exploiting the structural advantages of the DHT, our scheme can also achieve higher updating efficiency than the state-of-the-art schemes. In addition, we extend our scheme to support privacy preservation by combining the homomorphic authenticator based on the public key with the random masking generated by the TPA, and achieve batch auditing by employing the aggregate BLS signature technique. We formally prove the security of the proposed scheme, and evaluate the auditing performance by detailed experiments and comparisons with the existing ones. The results demonstrate that the proposed scheme can effectively achieve secure auditing for cloud storage, and outperforms the previous schemes in computation complexity, storage costs and communication overhead.
机译:云存储是一种越来越流行的云计算应用程序,它可以为组织和个人提供按需外包数据服务。但是,用户可能无法完全信任云服务提供商(CSP),因为很难确定CSP是否满足其对数据安全性的法律期望。因此,开发有效的审核技术以增强数据所有者对云存储的信任和信心至关重要。在本文中,我们提出了一种基于动态哈希表(DHT)的安全云存储公共审计新方案,该方案是位于第三奇偶校验器(TPA)上的一种新的二维数据结构,用于记录动态数据的属性信息审核。与现有工作不同,该方案将授权信息从CSP迁移到TPA,从而显着降低了计算成本和通信开销。同时,利用DHT的结构优势,我们的方案还可以获得比最新方案更高的更新效率。此外,我们将基于公钥的同态认证器与TPA生成的随机掩码相结合,扩展了方案以支持隐私保护,并通过使用聚合BLS签名技术来实现批审核。我们正式证明了该方案的安全性,并通过详细的实验和与现有方案的比较来评估审计绩效。结果表明,所提出的方案可以有效地实现对云存储的安全审计,并且在计算复杂度,存储成本和通信开销方面均优于以前的方案。

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