A Method for Improving the Stability of Grid-Connected Inverters by Eliminating the Negative Effects of PLL in Weak Grids

Jingpeng Yue, Jiayuan Gao, Ranran An, Li Jin, Ran Tao, Kaixing Zou
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引用次数: 2

Abstract

Phase-locked loop (PLL) is an important unit for a grid-connected inverter (GCI) to synchronize with the grid. And its negative impact on the stability of the GCI cannot be ignored. Especially in the weak grid, the impact is more prominent. In this paper, by constructing a small-signal control block diagram of a GCI that considers the effect of the PLL, it’s pointed out that the PLL introduces a positive feedback loop at the current reference value and the existence of the positive feedback loop will seriously reduce the stability of the GCI in the weak grid. Therefore, in order to eliminate the adverse effect of the positive feedback loop introduced by the PLL on the stability of the GCI, a negative feedback-loop compensation control method is proposed in this paper. By introducing a negative feedback compensation loop at the current reference value, the negative influence of the PLL is suppressed, thereby improving the stability of the GCI in a weak grid. At the same time, the control parameters of the negative feedback compensation loop are also analyzed and designed in detail. Finally, the correctness and effectiveness of the control strategy proposed in this paper are verified by simulation and experiment.
一种消除弱电网锁相环负面影响提高并网逆变器稳定性的方法
锁相环是并网逆变器与电网同步的重要单元。其对GCI稳定性的负面影响不容忽视。特别是在薄弱电网中,影响更为突出。本文通过构建考虑锁相环作用的GCI的小信号控制框图,指出锁相环在电流参考值处引入了正反馈环,正反馈环的存在会严重降低GCI在弱电网中的稳定性。因此,为了消除锁相环引入的正反馈环对GCI稳定性的不利影响,本文提出了一种负反馈环补偿控制方法。通过在电流参考值处引入负反馈补偿回路,抑制了锁相环的负面影响,从而提高了弱电网中GCI的稳定性。同时,对负反馈补偿回路的控制参数进行了详细的分析和设计。最后,通过仿真和实验验证了所提控制策略的正确性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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