Merkle Tree and Blockchain-Based Cloud Data Auditing

A. Mohan, R. MohamedAsfak, Angelin Gladston
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引用次数: 31

Abstract

Cloud computing is the fastest growing and most promising field in the service provisioning segment. It has become a challenging task to provide security in the cloud. The purpose of this article is to suggest a better and efficient integrity verification technique for data referred to as cloud audit. The deployment of cloud storage services has significant benefits in the management of data for users. However, this raises many security concerns, and one of them is data integrity. Though public verification techniques serve the purpose they are vulnerable to procrastinating auditors who may not perform verifications on time. In this article, a cloud data auditing system is proposed. The proposed cloud data auditing system integrates Merkle Tree-based Cloud audit and the blockchain-based audit recording system, thus the core idea is to record each verification result into a blockchain as a transaction. Utilizing the time-sensitive nature of blockchain, the verifications are time-stamped after the corresponding transaction is recorded into the blockchain, which enables users to check whether auditors have performed the verifications at the prescribed time. The proposed cloud data auditing system is experimentally validated. The investigations with varied dataset size revealed less time taken, on an average of 0.25 milliseconds with the use of Merkle Tree. Further results reveal consistency of the data integrity checking.
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默克尔树和基于区块链的云数据审计
云计算是服务供应领域中增长最快、最有前途的领域。在云中提供安全性已成为一项具有挑战性的任务。本文的目的是提出一种更好、更有效的数据完整性验证技术,称为云审计。部署云存储服务对用户的数据管理有很大的好处。然而,这引起了许多安全问题,其中之一就是数据完整性。尽管公共验证技术服务于目的,但它们容易受到拖延的审计员的影响,这些审计员可能无法按时执行验证。本文提出了一种云数据审计系统。提出的云数据审计系统集成了基于默克尔树的云审计和基于区块链的审计记录系统,其核心思想是将每个验证结果作为交易记录到区块链中。利用区块链的时间敏感特性,在相应的交易被记录到区块链之后,验证会被打上时间戳,这使得用户能够检查审计人员是否在规定的时间执行了验证。实验验证了所提出的云数据审计系统。对不同数据集大小的调查显示,使用Merkle Tree所花费的时间更少,平均为0.25毫秒。进一步的结果显示了数据完整性检查的一致性。
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