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应用于平抑风电波动模式下氢储能系统典型运行曲线的生成

徐衍会 徐宜佳 黄琰

全球能源互联网(英文)2022,Vol.5Issue(4):353-361,9.
全球能源互联网(英文)2022,Vol.5Issue(4):353-361,9.DOI:10.1016/j.gloei.2022.08.002

应用于平抑风电波动模式下氢储能系统典型运行曲线的生成

Generation of typical operation curves for hydrogen storage applied to the wind power fluctuation smoothing mode

徐衍会 1徐宜佳 1黄琰1

作者信息

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摘要

Abstract

In this paper, a typical-operation-curve generation method of a hydrogen energy storage system operating under the mode of stabilizing wind power fluctuations is proposed. This method is used to optimize the power and capacity configuration of the energy storage system. The time series curves of the charging and discharging powers of the hydrogen energy storage are obtained by EMD decomposition, and the curves are classified according to the similarities and differences of the characteristic parameters in different time periods. After the classification, typical charging and discharging power values of each type of curve at each moment are obtained by a cloud model, and then, typical operation curves of each type are obtained by integration. On this basis, the power and capacity of the energy storage system are optimized with the objective of economic optimization through the MATLAB CPLEX toolbox. Combined with the measured data of a wind farm with an installed capacity of 400 MW in Northeast China, the validity and rationality of the typical operation curve generation method proposed in this paper are verified.

关键词

风电场/氢储能/聚类分析/典型运行曲线/容量配置

Key words

Wind farm/Hydrogen energy storage system/Cluster analysis/Typical operation curves/Capacity configuration

引用本文复制引用

徐衍会,徐宜佳,黄琰..应用于平抑风电波动模式下氢储能系统典型运行曲线的生成[J].全球能源互联网(英文),2022,5(4):353-361,9.

基金项目

This work was supported by the National Key Research and Development Program of China(Materials and Process Basis of Electrolytic Hydrogen Production from Fluctuating Power Sources such as Photovoltaic/Wind Power,No.2021YFB4000100). (Materials and Process Basis of Electrolytic Hydrogen Production from Fluctuating Power Sources such as Photovoltaic/Wind Power,No.2021YFB4000100)

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