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CloudPoS: A Proof-of-Stake Consensus Design for Blockchain Integrated Cloud

机译:CloudPoS:区块链集成云的权益证明共识设计

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Maintaining data provenance in cloud in a tamper-resistant manner that cannot be breached by malicious parties is a necessity from the current security standpoint. Blockchain technology has emerged as a secure solution to store and share information by offering an immutable distributed ledger service. Its effectiveness hinges on the infrastructure supporting the distributed ledger and consensus protocol that governs the validity of entries in the Blockchain. Hence, Blockchain can be a potential candidate to implement data provenance; however, traditional cryptocurrency-based consensus models become a bottleneck in the cloud environment. Therefore, in this paper, we propose a Blockchain based data provenance architecture (BlockCloud) that incorporates a proof-of-stake (PoS)-based consensus protocol (CloudPoS) for securely recording the data operations occurring in cloud environment. The critical operational phases of the protocol are discussed in depth, which leverages the cloud users' cyber infrastructure resources. A cloud-based testbed environment is created using a local cluster of physical machines managed by Xen hypervisor. Resource elasticity is enabled using Kubernetes setup that interacts with the dockerized containers, which emulate as peers in the Blockchain network. We then evaluate the effectiveness of the protocol in a simulated environment and conduct performance tests of the proposed consensus.
机译:从当前的安全角度来看,有必要以防篡改的方式在云中维护数据源,而恶意方不能破坏数据源。区块链技术已经成为一种安全的解决方案,可通过提供不可变的分布式分类帐服务来存储和共享信息。它的有效性取决于支持分布式账本和共识协议的基础架构,该协议支配着区块链中条目的有效性。因此,区块链可以成为实现数据来源的潜在候选者。然而,传统的基于加密货币的共识模型成为云环境中的瓶颈。因此,在本文中,我们提出了一种基于区块链的数据源架构(BlockCloud),该架构结合了基于权益证明(PoS)的共识协议(CloudPoS),用于安全记录云环境中发生的数据操作。对该协议的关键操作阶段进行了深入讨论,它利用了云用户的网络基础设施资源。使用由Xen虚拟机管理程序管理的物理计算机的本地群集创建基于云的测试平台环境。使用Kubernetes设置可实现资源弹性,该设置可与dockerized容器交互,而dockerized容器在区块链网络中模拟为对等节点。然后,我们在模拟环境中评估协议的有效性,并对提议的共识进行性能测试。

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