提升光伏发电站主动支撑能力的跟网–构网协同控制策略

A Grid-following and Grid-forming Collaborative Control Strategy for Enhancing the Active Support Capacity of Photovoltaic Power Plants

  • 摘要: 在“沙戈荒”大型光伏基地送出场景下,传统光伏发电站面临频率和电压支撑能力不足的问题。针对跟网–构网混合型光伏发电站,提出一种频率和电压协同控制策略,以提升光伏发电站主动支撑能力。首先,根据外界光照条件变化情况以及光伏阵列的P-V(功率–电压)输出特性,提出一种基于变备用容量占比的构网型光伏控制策略,为光伏发电站主动支撑控制提供能量;然后,同时考虑光伏发电站的支撑能力和经济性,提出一种适用于跟网–构网混合型光伏发电站的频率和电压主动支撑协同控制策略;最后,通过实际光伏发电站并网系统算例分析表明,相较于传统控制策略,所提协同控制策略在不同类型扰动下均可以有效降低交流系统频率和电压的变化范围。上述混合型光伏发电站协同控制策略可以有效提升其对交流系统电压和频率的主动支撑能力,有助于光伏发电从辅助型电源逐步向主力型电源过渡。

     

    Abstract: In the context of power transmission from large-scale photovoltaic (PV) bases located in the desert, Gobi, and barren lands, conventional PV power plants face challenges of insufficient frequency and voltage support capabilities. For grid-following(GFL) and grid-forming(GFM) hybrid PV power plants, a frequency and voltage collaborative control strategy is proposed to enhance their active support capability. Firstly, considering variations in solar irradiance and the P-V output characteristics of PV arrays, a GFM PV control strategy based on variable reserve capacity ratio is proposed to provide the energy required for active support. Subsequently, by balancing active support capability with economic considerations, a collaborative control strategy for frequency and voltage active support, suitable for GFL/GFM hybrid PV plants, is introduced. Finally, case studies on a practical grid-connected PV power plant demonstrate that, compared with traditional control strategies, the proposed collaborative control strategy for hybrid PV plants can effectively reduce the variation ranges of AC system frequency and voltage under different types of disturbances. The proposed collaborative control strategy for hybrid PV power plants can significantly enhance their active support capability for AC system voltage and frequency. This advancement facilitates the transition of PV generation from an auxiliary power source to a primary one.

     

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