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DAG-Based Distributed Ledger for Low-Latency Smart Grid Network

机译:低延迟智能电网基于DAG的分布式账本

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In this paper, we propose a scheme that implements a Distributed Ledger Technology (DLT) based on Directed Acyclic Graph (DAG) to generate, validate, and confirm the electricity transaction in Smart Grid. The convergence of the Smart Grid and distributed ledger concept has recently been introduced. Since Smart Grids require a distributed network architecture for power distribution and trading, the Distributed Ledger-based Smart Grid design is a spotlighted research domain. However, only the Blockchain-based methods, which are a type of the distributed ledger scheme, are currently either being considered or adopted in the Smart Grid. Due to computation-intensive consensus schemes such as Proof-of-Work and discrete block generation, Blockchain-based distributed ledger systems suffer from efficiency and latency issues. We propose a DAG-based distributed ledger for Smart Grids, called PowerGraph, to resolve this problem. Since a DAG-based distributed ledger does not need to generate blocks for confirmation, each transaction of the PowerGraph undergoes the validation and confirmation process individually. In addition, transactions in PowerGraph are used to keep track of the energy trade and include various types of transactions so that they can fully encompass the events in the Smart Grid network. Finally, to ensure that PowerGraph maintains a high performance, we modeled the PowerGraph performance and proposed a novel consensus algorithm that would result in the rapid confirmation of transactions. We use numerical evaluations to show that PowerGraph can accelerate the transaction processing speed by over 5 times compared to existing DAG-based DLT system.
机译:在本文中,我们提出了一种方案,该方案实施基于有向无环图(DAG)的分布式账本技术(DLT)以生成,验证和确认智能电网中的电力交易。最近引入了智能电网和分布式分类帐概念的融合。由于智能电网需要用于配电和交易的分布式网络体系结构,因此基于分布式分类帐的智能电网设计是研究的重点。但是,目前仅在智能电网中考虑或采用基于分布式区块链方案的基于区块链的方法。由于工作量证明和离散块生成等计算密集型共识方案,基于区块链的分布式分类帐系统存在效率和延迟问题。我们提出了一种用于智能电网的基于DAG的分布式分类帐,称为PowerGraph,以解决此问题。由于基于DAG的分布式分类帐不需要生成用于确认的块,因此PowerGraph的每个事务都将分别进行确认和确认过程。此外,PowerGraph中的交易用于跟踪能源交易,并包括各种类型的交易,以便它们可以完全涵盖智能电网网络中的事件。最后,为了确保PowerGraph保持较高的性能,我们对PowerGraph的性能进行了建模,并提出了一种新颖的共识算法,该算法可以快速确认交易。我们使用数值评估表明,与现有的基于DAG的DLT系统相比,PowerGraph可以将事务处理速度提高5倍以上。

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