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首页> 外文期刊>Information Forensics and Security, IEEE Transactions on >Enabling Cloud Storage Auditing With Key-Exposure Resistance
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Enabling Cloud Storage Auditing With Key-Exposure Resistance

机译:启用具有密钥暴露抵抗能力的云存储审计

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摘要

Cloud storage auditing is viewed as an important service to verify the integrity of the data in public cloud. Current auditing protocols are all based on the assumption that the client’s secret key for auditing is absolutely secure. However, such assumption may not always be held, due to the possibly weak sense of security and/or low security settings at the client. If such a secret key for auditing is exposed, most of the current auditing protocols would inevitably become unable to work. In this paper, we focus on this new aspect of cloud storage auditing. We investigate how to reduce the damage of the client’s key exposure in cloud storage auditing, and give the first practical solution for this new problem setting. We formalize the definition and the security model of auditing protocol with key-exposure resilience and propose such a protocol. In our design, we employ the binary tree structure and the preorder traversal technique to update the secret keys for the client. We also develop a novel authenticator construction to support the forward security and the property of blockless verifiability. The security proof and the performance analysis show that our proposed protocol is secure and efficient.
机译:云存储审核被视为一种重要服务,可验证公共云中数据的完整性。当前的审核协议均基于以下假设:客户的审核密钥绝对安全。但是,由于客户端的安全感可能很弱和/或安全性设置较低,因此这种假设可能并不总是成立。如果公开了这样的审计密钥,那么当前大多数审计协议将不可避免地无法工作。在本文中,我们专注于云存储审核的这一新方面。我们研究了如何减少客户在云存储审计中的关键风险,并为这种新问题提供了第一个实用的解决方案。我们用密钥暴露弹性对审计协议的定义和安全模型进行形式化,并提出了这样的协议。在我们的设计中,我们采用二叉树结构和预遍历技术来更新客户端的秘密密钥。我们还开发了一种新颖的身份验证器构造,以支持前向安全性和无障碍可验证性的属性。安全证明和性能分析表明,我们提出的协议是安全有效的。

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