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A Cross-Chain Solution to Integration of IoT Tangle for Data Access Management

机译:用于数据访问管理的IoT缠结集成的跨链解决方案

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At present, the Internet of Things (IoT) is rapidly setting off a huge wave of digitalization in traditional industries. In the era of the Internet of Everything, massive data is generated by IoT devices. Recently, Blockchain has attracted more and more attentions in the field of IoT due to its decentralization, traceability, security and so on. Many IoT-oriented data services are built based on distributed ledger technology like blockchains. However, due to the lack of scalability and high transaction costs of the public blockchain, it is hard to directly apply the blockchain technology to IoT scenarios. The recent transaction directed acyclic graph (TDAG) technology, especially Tangle, is suitable for low-latency M2M (Machine to Machine) micropayment transactions in the ever-growing scale of the edge-centric IoT. In this paper, we propose a framework to integrate Tangle into IoT blockchains and build a cross-chain interactive decentralized access model in the context of data management. We employ a consortium blockchain as the control station, and Tangle runs as the backbone of all IoT devices. It is equivalent to opening the off-chain channel of the DAG Tangle structure on the consortium blockchain. Transactions in these channels form the sub-Tangle and then merge sub-Tangle into the main Tangle for confirmation through the notary mechanism. Finally, we implement a prototype of the proposed model and conduct extensive experiments to evaluate its performance. The results clearly demonstrate the effectiveness and efficiency of our framework.
机译:当前,物联网(IoT)在传统行业中迅速引发了巨大的数字化浪潮。在万物互联时代,物联网设备会生成大量数据。近年来,由于区块链的去中心化,可追溯性,安全性等原因,区块链在物联网领域引起了越来越多的关注。许多面向物联网的数据服务都是基于分布式账本技术(如区块链)构建的。但是,由于公共区块链缺乏可扩展性和高交易成本,很难将区块链技术直接应用于物联网场景。最近的交易有向无环图(TDAG)技术,特别是Tangle,适用于以边缘为中心的IoT规模不断增长的低延迟M2M(机器对机器)微支付交易。在本文中,我们提出了一个框架,将Tangle集成到IoT区块链中,并在数据管理的背景下构建跨链交互式分散式访问模型。我们采用财团区块链作为控制站,而Tangle作为所有物联网设备的骨干网。这等效于在联盟区块链上打开DAG Tangle结构的链下通道。这些通道中的事务形成子缠结,然后将子缠结合并到主缠结中,以通过公证机制进行确认。最后,我们实现了所提出模型的原型,并进行了广泛的实验以评估其性能。结果清楚地证明了我们框架的有效性和效率。

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