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Public Cloud Data Auditing with Practical Key Update and Zero Knowledge Privacy

机译:公共云数据审核,具有实际关键更新和零知识隐私

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摘要

Data integrity is extremely important for cloud based storage services, where cloud users no longer have physical possession of their outsourced files. A number of data auditing mechanisms have been proposed to solve this problem. However, how to update a cloud user's private auditing key (as well as the authenticators those keys are associated with) without the user's re-possession of the data remains an open problem. In this paper, we propose a key-updating and authenticator-evolving mechanism with zero-knowledge privacy of the stored files for secure cloud data auditing, which incorporates zero knowledge proof systems, proxy re-signatures and homomorphic linear authenticators. We instantiate our proposal with the state-of-the-art Shacham-Waters auditing scheme. When the cloud user needs to update his key, instead of downloading the entire file and re-generating all the authenticators, the user can just download and update the authenticators. This approach dramatically reduces the communication and computation cost while maintaining the desirable security. We formalize the security model of zero knowledge data privacy for auditing schemes in the key-updating context and prove the soundness and zero-knowledge privacy of the proposed construction. Finally, we analyze the complexity of communication, computation and storage costs of the improved protocol which demonstrates the practicality of the proposal.
机译:数据完整性对于基于云的存储服务来说非常重要,其中云用户不再具有其外包文件的物理拥有。已经提出了许多数据审核机制来解决这个问题。但是,在没有用户重新拥有数据的情况下,如何更新云用户的私人审核密钥(以及验证器与这些密钥相关联)仍然是一个打开问题。在本文中,我们提出了一个键更新和认证者演化机制,具有存储文件的零知识隐私,用于安全云数据审核,它包含零知识证明系统,代理重新签名和同性全的线性验证器。我们将我们的提案与最先进的Shacham-Waters审计计划实例化。当云用户需要更新他的密钥时,而不是下载整个文件并重新生成所有身份验证器时,用户只能下载并更新验证器。这种方法在保持所需安全性的同时大大降低了通信和计算成本。我们将零知识数据隐私的安全模型正式化,以便在键更新的上下文中审计方案,并证明所提出的构造的声音和零知识隐私。最后,我们分析了改进协议的通信,计算和储存成本的复杂性,这表明提案的实用性。

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