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Privacy preserving data auditing protocol for secure storage in mobile cloud computing

机译:隐私保留数据审核协议,用于移动云计算中的安全存储

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In spite of the growing usage of smart mobile devices, the inherent restrictions like resource scarcity, mobility and frequent disconnections makes it difficult to exploit its full potential. Cloud computing simplifies the deployment of large-scale distributed systems and enables advanced computational power with improved storage capabilities. The evolution of Mobile Cloud Computing (MCC) exploits the services of Cloud Service Providers (CSP) by outsourcing the local data storage and computation to the remote servers and thereby relieving the overhead incurred by mobile clients for data storage and processing. In spite of the relief, the clients no longer have control over their outsourced data which demands the purpose of ensuring the data intactness maintained by the Cloud Storage Server (CSS). The resource constrained mobile devices act as a thin client for the cloud server access and hence the computation for ensuring the proof of correctness for secure data storage becomes an overhead with existing solutions. The proposed auditing protocol introduces a trusted third party auditor (TPA) who will be in charge of verifying the correctness of data stored at cloud storage on behalf of the user without the need for retrieving the entire data. The usage of Bilinear pairing and Merkle Hash Trees guarantees Blockless verification by TPA. The verification process in the proposed method reduces the auditing overhead at the mobile device using short signatures. The proposed auditing protocol saves the mobile client's computational resource, thereby achieving cost-effectiveness to gain trust in the Cloud Storage Service.
机译:尽管智能移动设备的使用越来越多,但资源稀缺,移动性和频繁断开的固有限制使得难以利用其全部潜力。云计算简化了大规模分布式系统的部署,并实现了高级计算功率,具有改进的存储功能。移动云计算(MCC)的演变通过将本地数据存储和计算外包给远程服务器来利用云服务提供商(CSP)的服务,从而减轻移动客户端引起的开销进行数据存储和处理。尽管有缓解,客户不再对其外包数据进行控制,这需要确保云存储服务器(CSS)维护的数据的目的。资源受限的移动设备充当云服务器访问的瘦客户端,因此用于确保安全数据存储的正确性证明的计算成为现有解决方案的开销。拟议的审计协议介绍了一个值得信赖的第三方审计员(TPA),他们将负责代表用户验证存储在云存储处的数据的正确性,而无需检索整个数据。双线性配对和Merkle哈希树的使用保证了TPA无障碍验证。所提出的方法中的验证过程可使用短签名减少移动设备的审计开销。所提出的审计协议保存了移动客户端的计算资源,从而实现了在云存储服务中获得信任的成本效益。

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