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RITS-MHT: Relative indexed and time stamped Merkle hash tree based data auditing protocol for cloud computing

机译:RITS-MHT:基于相对索引和时间戳的Merkle哈希树的数据审计协议,用于云计算

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Cloud computing is a recent phrase in marketing for a concept which has been known for years: Outsourcing. Cloud computing provides cornucopian of gratuities for both individual users and business organizations. 'Cloud' is more of a notion where files and data are hosted online and can be accessed when required via a number of methods, anywhere, and at any time. That is the gist of it. Providing storage space to cloud users is an appealing service of cloud computing. Although cloud storage provides benefits of location independence access to data, reduced burden for hardware and software maintenance and many more, yet this service has several challenges in the range of security and preserving data. Cloud servers may exist in white puffy shapes in the azure, but these are not immune to temporal errors. To ensure that outsourced data is secure and is not tampered, cloud provider must allow data proprietor to periodically audit data integrity. Numerous Remote Data Auditing (RDA) protocols have been proposed by researchers so far. In presented work, to cope with this problem we analyze the efficiency issues of a current protocol for data integrity auditing in cloud storage and propose an approach based on Relative Index and Time Stamped Merkle Hash Tree (RITS - - MHT) which integrates MHT with relative index of a node resulting in reduction of computation cost of searching a data block from O(n) in Wang's protocol to O(log n) and time of last modification to data, thereby guarantying freshness of data respectively. RITS - - MHT ensures that the outsourced data has not been polluted as well as it assures that the recent copy of data is reclaimed. This protocol supports public auditing of data, and efficiently supports data dynamic operations like insertion, modification, deletion of outsourced data at minimal computational cost. The security of proposed protocol has been proved in Random Oracle Model (ROM). As compared to Wang's protocol, RITS - - NWT is more efficient in terms of computation cost.
机译:云计算是市场营销中最近出现的一个短语,它表达了一个多年的概念:外包。云计算为个人用户和商业组织提供了小费。 “云”更像是一种概念,其中文件和数据在线托管,可以在需要时通过多种方法随时随地进行访问。这就是要点。为云用户提供存储空间是云计算的一项吸引人的服务。尽管云存储提供了位置独立访问数据的好处,减轻了硬件和软件维护的负担,等等,但是,此服务在安全性和保存数据的范围方面仍存在一些挑战。云服务器可能会在蔚蓝的天空中以白色蓬松的形状存在,但是它们无法避免时间错误。为了确保外包数据的安全性并且不被篡改,云提供商必须允许数据所有者定期审核数据完整性。到目前为止,研究人员已经提出了许多远程数据审计(RDA)协议。在提出的工作中,为了解决该问题,我们分析了当前用于云存储中数据完整性审核的协议的效率问题,并提出了一种基于相对索引和时间戳Merkle哈希树(RITS--MHT)的方法,该方法将MHT与相对节点的索引,从而降低了从Wang协议中的O(n)搜索数据块到O(log n)以及最后修改数据的时间所需要的计算成本,从而确保了数据的新鲜度。 RITS--MHT确保外包数据没有受到污染,并确保回收了最近的数据副本。该协议支持数据的公共审计,并以最小的计算成本有效地支持数据动态操作,例如插入,修改,删除外包数据。所提出协议的安全性已在随机Oracle模型(ROM)中得到证明。与Wang的协议相比,RITS-NWT在计算成本方面更为高效。

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