An Effective Framework of Private Ethereum Blockchain Networks for Smart Grid

Dongho Son, T. T. T. Quynh, Tran Viet Khoa, D. Hoang, N. Trung, Nguyen Viet Ha, D. Niyato, Diep N. Nguyen, E. Dutkiewicz
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引用次数: 5

Abstract

A smart grid is an important application in Industry 4.0 with a lot of new technologies and equipment working together. Hence, sensitive data stored in the smart grid is vulnerable to malicious modification and theft. This paper proposes a framework to build a smart grid based on a highly effective private Ethereum network. Our framework provides a real smart grid that includes modern hardware and a smart contract to secure data in the blockchain network. To obtain high throughput but a low uncle rate, the difficulty calculation method used in the mining process of the Ethereum consensus mechanism is modified to adapt to the practical smart grid setup. The performance in terms of throughput and latency are evaluated by simulation and verified by the real smart grid setup. The enhanced private Ethereum-based smart grid has significantly better performance than the public one. Moreover, this framework can be applied to any system used to store data in the Ethereum network.
智能电网专用以太坊区块链网络的有效框架
智能电网是工业4.0的重要应用,许多新技术和设备协同工作。因此,存储在智能电网中的敏感数据容易受到恶意修改和窃取。本文提出了一个基于高效私有以太坊网络构建智能电网的框架。我们的框架提供了一个真正的智能电网,其中包括现代硬件和智能合约,以保护区块链网络中的数据。为了获得高吞吐量和低大叔率,对以太坊共识机制挖掘过程中使用的难度计算方法进行了修改,以适应实际的智能电网设置。通过仿真评估了该算法在吞吐量和延迟方面的性能,并通过实际智能电网进行了验证。增强型私有以太坊智能电网的性能明显优于公共智能电网。此外,该框架可以应用于用于在以太坊网络中存储数据的任何系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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