A Scalable Data Provenance Mechanism for Cloud Environment using Ethereum Blockchain

P. Abhishek, Y. Akash, D. Narayan
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引用次数: 2

Abstract

Cloud computing has become an important technology for the processing of large computationally expensive programs and data from real-world. IT organizations are en-trusting the cloud vendors for the security of their computational infrastructures including the data. Thus, there is a need for better provenance assurance for the data present in the cloud for better security and to establish trust between the cloud vendors and customers. Blockchain technology operates in a decentralized way for building trust between the entities in the system using immutable ledger. In this work, we propose the decentralized and trusted cloud data provenance mechanism using Ethereum blockchain platform, IPFS and scalable consensus mechanism. PoW is the consensus algorithm currently used in Ethereum Blockchain. PoW consensus mechanism needs lot of computational power for the processing of data in the Blockchain. Thus, we implement Proof of Stake (POS) consensus algorithm in Ethereum to improve the efficiency of the proposed data provenance mechanism. We demonstrate the performance of PoS-enabled provenance framework in a multi-node testbed. The results reveal that POS performs better than PoW for cloud data provenance.
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基于以太坊区块链的云环境可扩展数据来源机制
云计算已经成为处理现实世界中计算成本高昂的大型程序和数据的重要技术。IT组织将其计算基础设施(包括数据)的安全性委托给云计算供应商。因此,需要为云中的数据提供更好的来源保证,以获得更好的安全性,并在云供应商和客户之间建立信任。区块链技术以去中心化的方式运行,使用不可变分类账在系统中的实体之间建立信任。在这项工作中,我们提出了基于以太坊区块链平台、IPFS和可扩展共识机制的去中心化可信云数据溯源机制。PoW是目前以太坊区块链中使用的共识算法。PoW共识机制需要大量的计算能力来处理区块链中的数据。因此,我们在以太坊中实现了权益证明(POS)共识算法,以提高所提议的数据来源机制的效率。我们在一个多节点测试平台上演示了pos支持的溯源框架的性能。结果表明,POS在云数据溯源方面的性能优于PoW。
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