Design and implementation of a peer-to-peer energy trading scheme in multi-microgrid network with photovoltaics and wind energy

Q3 Energy
Muhammad Ehjaz, M. Iqbal, S. S. Zaidi, B. Khan
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引用次数: 0

Abstract

Expected widespread deployment of Peer-to-Peer energy transactions through affective utilization of Renewable Energy Sources require efficient energy transaction mechanism among the microgrids. We propose a scheme to establish peer-to-peer energy trading in multi-microgrid network by considering photovoltaic and wind energy systems. The research objectives are to minimize overall cost of all microgrids in multi-microgrid network and minimize the loading on centralized power network. Various parameters of photovoltaics and wind energy systems are modeled to explore their impact on P2P energy trading. Energy Management Unit establishes the smart contracts among microgrids, manages power transactions and calculates the cost based on dynamic pricing scheme in the multi-microgrid network. Two different cases are considered with respect to the types of power transaction among the microgrids in the multi-microgrid network and main grid. The effectiveness of the proposed scheme is validated by implementing on local small-scale power distribution system.
光伏和风能多微电网点对点能源交易方案的设计与实现
通过有效利用可再生能源,预计将广泛部署对等能源交易,这需要在微电网中建立高效的能源交易机制。我们提出了一种方案,通过考虑光伏和风能系统,在多微电网网络中建立对等能源交易。研究目标是最大限度地降低多微电网中所有微电网的总体成本,并最大限度地减少集中式电网的负荷。对光伏和风能系统的各种参数进行建模,以探索它们对P2P能源交易的影响。能源管理单元在多微电网中建立微电网之间的智能合约,管理电力交易,并基于动态定价方案计算成本。针对多微电网和主电网中微电网之间的电力交易类型,考虑了两种不同的情况。通过在当地小规模配电系统上的实施,验证了该方案的有效性。
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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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