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Transient stability analysis of grid-tied converters considering PLL’s nonlinearity

机译:考虑PLL非线性的并网转换器的暂态稳定性分析

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Transient instability events of grid-tied converters probably occur while riding through grid faults. During low-voltage ride through (LVRT) period, seeing from the converter terminal towards the grid, the Thévenin equivalent grid impedance becomes pretty significant, accordingly making the converter terminal voltage highly sensitive to the output current. Under such circumstances, it is challenging for the converter to resynchronize with the grid via a phase-locked loop (PLL). This paper develops a reduced-order nonlinear model to elaborate on the dynamic synchronization characteristic of the converters. By considering the impact of grid impedance and analysing spatial vector tracking relation, resynchronization principle of the converters during LVRT is revealed. Besides, the impacts of circuit parameters and controller parameters, including residual grid voltage, grid impedance, current references, and PLL parameters, on the transient stability of the converters are investigated. The results are verified by simulation and experimental results.
机译:并网转换器的暂态不稳定性事件可能会在穿越电网故障时发生。在低压穿越(LVRT)期间,从转换器端子向电网看,Thévenin等效电网阻抗变得非常重要,因此使转换器端子电压对输出电流高度敏感。在这种情况下,转换器通过锁相环(PLL)与电网重新同步具有挑战性。本文建立了降阶非线性模型,以详细说明转换器的动态同步特性。通过考虑电网阻抗的影响并分析空间矢量跟踪关系,揭示了转换器在LVRT期间的重新同步原理。此外,还研究了电路参数和控制器参数(包括残留电网电压,电网阻抗,电流参考和PLL参数)对转换器瞬态稳定性的影响。仿真和实验结果验证了该结果。

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