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Research on output power fluctuation characteristics of the clustering Photovoltaic-wind joint power generation system based on continuous output analysis

机译:基于连续输出分析的光伏-风能联合发电系统输出功率波动特性研究

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Grid-connected operation of Photovoltaic power generation and wind power generation is the effective approach to achieve the large-scale development and utilization of solar energy source and wind energy source. On account of fluctuation and discontinuity of solar energy and wind energy, large-scale output power fluctuation will adversely affect the connected grid balance between supply and demand. Based on the established PV plant steady-state model, combined with the clustering wind farms of certain provincial power grid, this paper established the clustering PV-wind joint power generation system. Through analysis of the continuous output characteristics, this paper assessed the output power fluctuation characteristics of the clustering PV-wind joint power generation system and uncovered its "clustering effect". The example shows that compared with clustering wind farms and PV plants alone, output power of the clustering PV-wind joint power generation system is steadier, and presents more obvious "clustering effect". Based on the proposed assessment indices, this paper presented the reasonable interval of capacity scale between PV power and wind power of the clustering PV-wind joint power generation system.
机译:光伏发电和风力发电并网运行是实现太阳能和风能大规模开发利用的有效途径。由于太阳能和风能的波动和不连续性,大的输出功率波动将不利地影响供需之间的互联电网平衡。在建立的光伏电站稳态模型的基础上,结合某省级电网的集束风电场,建立了集束式PV风电联合发电系统。通过对连续输出特性的分析,评估了聚光光伏-风联合发电系统的输出功率波动特性,并揭示了其“聚类效应”。实例表明,与仅集聚风电场和光伏电站相比,集聚PV-风联合发电系统的输出功率更稳定,并且表现出更加明显的“集聚效应”。在提出的评估指标的基础上,提出了聚光光伏-风能联合发电系统光伏发电与风力发电容量规模的合理区间。

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