Decentralized peer-to-peer energy trading in microgrids: Leveraging blockchain technology and smart contracts

IF 4.7 3区 工程技术 Q2 ENERGY & FUELS Energy Reports Pub Date : 2024-08-05 DOI:10.1016/j.egyr.2024.07.053
Nimrah Saeed, Fushuan Wen, Muhammad Zeshan Afzal
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Abstract

Microgrids are regarded as vital components in contemporary realm of energy system improvement, resilience, and sustainability. In this paper a novel decentralized peer-to-peer energy trading system leveraging blockchain technology is proposed. The proposed model not only demonstrates the implementation of blockchain technology in microgrids but also transforms the energy sector by emphasizing decentralization, security and efficiency. This research aims to enhance the energy trading system by including smart contracts written on the Ethereum network. Energy Token and Demand Response contracts are integrated to enable dynamic interactions inside microgrids, which leads to a transparent, secure, and efficient energy trading system. Moreover, automation of energy transactions and elimination of intermediaries ensure cost effectiveness and utilization of excess energy potentially reduce dependency on the main grid. A microgrid system is designed in Simulink for distributed energy trading. Energy credits are represented by standard ERC-20 digital token and then demand response contract dynamically adjusts rewards and energy prices based on energy production and consumption. the ERC-20 contract manages the token transaction and then demand response contract enforces governance rules. The purpose of a demand response contract is to enable the automatic and efficient control of energy usage in response to changing demand and supply conditions. The use of the Web3 library further facilitates a direct and smooth connection between the blockchain network and microgrids. The results demonstrate the successful implementation of both smart contracts, making trading possible at noon when the combined generation from solar array and energy management system exceed the energy demand.

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微电网中的去中心化点对点能源交易:利用区块链技术和智能合约
微电网被视为当代能源系统改进、复原力和可持续性领域的重要组成部分。本文提出了一种利用区块链技术的新型分散式点对点能源交易系统。所提出的模型不仅展示了区块链技术在微电网中的应用,还通过强调去中心化、安全性和效率改变了能源行业。这项研究旨在通过纳入以太坊网络编写的智能合约来增强能源交易系统。能源令牌和需求响应合约的整合实现了微电网内部的动态互动,从而产生了一个透明、安全和高效的能源交易系统。此外,能源交易的自动化和中间商的消除确保了成本效益和多余能源的利用,从而有可能减少对主电网的依赖。在 Simulink 中设计了一个用于分布式能源交易的微电网系统。能源信用由标准的 ERC-20 数字代币表示,然后需求响应合约根据能源生产和消耗情况动态调整奖励和能源价格。ERC-20 合约管理代币交易,然后需求响应合约执行治理规则。需求响应合约的目的是根据不断变化的供需条件自动有效地控制能源使用。Web3 库的使用进一步促进了区块链网络与微电网之间直接而顺畅的连接。结果表明,这两种智能合约都得到了成功实施,当太阳能电池阵和能源管理系统的综合发电量超过能源需求时,就可以在中午进行交易。
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来源期刊
Energy Reports
Energy Reports Energy-General Energy
CiteScore
8.20
自引率
13.50%
发文量
2608
审稿时长
38 days
期刊介绍: Energy Reports is a new online multidisciplinary open access journal which focuses on publishing new research in the area of Energy with a rapid review and publication time. Energy Reports will be open to direct submissions and also to submissions from other Elsevier Energy journals, whose Editors have determined that Energy Reports would be a better fit.
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