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One secure data integrity verification scheme for cloud storage

机译:一种用于云存储的安全数据完整性验证方案

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Cloud computing is a novel kind of information technology that users can enjoy sundry cloud services from the shared configurable computing resources. Compared with traditional local storage, cloud storage is a more economical choice because the remote data center can replace users for data management and maintenance, which can save time and money on the series of work. However, delivering data to an unknown Cloud Service Provider (CSP) makes the integrity of data become a potential vulnerability. To solve this problem, we propose a secure identity based aggregate signatures (SIBAS) as the data integrity checking scheme which resorts Trusted Execution Environment (TEE) as the auditor to check the outsourced data in the local side. SIBAS can not only check the integrity of outsourced data, but also achieve the secure key management in TEE through Shamir's (t, n) threshold scheme. To prove the security, security analysis in the random oracle model under the computational Diffie-Hellman assumption shows that SIBAS can resist attacks from the adversary that chooses its messages and target identities, experimental results also show that our solution is viable and efficient in practice. (C) 2019 Elsevier B.V. All rights reserved.
机译:云计算是一种新型的信息技术,用户可以从共享的可配置计算资源中享受各种云服务。与传统的本地存储相比,云存储是一种更经济的选择,因为远程数据中心可以代替用户来进行数据管理和维护,从而可以节省一系列工作的时间和金钱。但是,将数据传递到未知的云服务提供商(CSP)会使数据的完整性成为潜在的漏洞。为了解决此问题,我们提出了一种基于安全身份的聚合签名(SIBAS)作为数据完整性检查方案,该方法采用可信执行环境(TEE)作为审核员来检查本地的外包数据。 SIBAS不仅可以检查外包数据的完整性,还可以通过Shamir(t,n)阈值方案在TEE中实现安全密钥管理。为了证明安全性,在计算的Diffie-Hellman假设下对随机oracle模型进行安全性分析表明,SIBAS可以抵抗来自选择其消息和目标身份的对手的攻击,实验结果还表明,我们的解决方案在实践中是可行且有效的。 (C)2019 Elsevier B.V.保留所有权利。

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