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Research on LVRT Based on Maximum Power Point Tracking Strategy

机译:基于最大功率点跟踪策略的LVRT研究

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The primary researches are mainly of two measures focused on a suitable control strategy and an additional hard-ware circuit to enhance the LVRT capability of photovoltaic (PV) system. In this paper, according to the Grid Integration Technical Regulation of PV station published by state grid crop, a hybrid control method composed of software and hardware are presented to enhance the capacity of low-voltage ride-through (LVRT). With the action of the hybrid control strategy, the PV system, in the fault condition, can quickly suppress the fault current and fluctuation of its DC-link. The method also can effectively improve the grid voltage sag and significantly reduce the adjustable range of power factor according to the depth of the grid voltage dip. Therefore, the transient performance of PV system is significantly strengthened. The simulation model of a two-stage three-phase PV system is built in MATLAB and the validity of the proposed method is demonstrated through the different scenarios.
机译:初步研究主要集中在两种措施上,这些措施侧重于合适的控制策略,另外还有一种用于增强光伏(PV)系统的LVRT能力的硬件电路。本文根据国家电网公司发布的《光伏电站并网技术规范》,提出了一种由软件和硬件组成的混合控制方法,以提高低压穿越能力。通过混合控制策略的作用,处于故障状态的光伏系统可以快速抑制故障电流及其直流母线的波动。该方法还可以有效地改善电网电压骤降,并根据电网电压骤降的深度显着减小功率因数的可调范围。因此,光伏系统的暂态性能得到了显着增强。在MATLAB中建立了两阶段三相光伏系统的仿真模型,并通过不同的场景证明了该方法的有效性。

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