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Dynamic Phasor Modeling of SRF-PLL Based Grid-Tie Inverter Under Islanded Conditions

机译:孤岛条件下基于SRF-PLL的并网逆变器的动态相量建模

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Synchronous reference frame (SRF) phase locked loop (PLL) is a widely employed scheme for synchronization of three-phase grid-tied inverters (GTI). The SRF-PLL model discussed in the literature for analysis assumes a voltage source being present at the point of common coupling (PCC) in the form of the grid. The case of grid-disconnection and a subsequent unintentional island formation is typically not considered. In this work, a dynamic-phasor based complex domain analysis of the SRF-PLL model is proposed that is suitable for studying the behavior of an unintentionally islanded GTI. The model accurately predicts the steady-state operating frequency of the system after the unintentional island formation, for UPF as well as other operating power factors of the GTI with varied load conditions. Simulation and experimental results of islanding conducted on a 4.5kVA three-phase GTI system are presented that validate the proposed analytical approach and the resulting system model.
机译:同步参考帧(SRF)锁相环(PLL)是用于三相并网逆变器(GTI)同步的一种广泛采用的方案。文献中讨论的用于分析的SRF-PLL模型假定电压源以网格形式存在于公共耦合点(PCC)处。通常不考虑电网断开和随后无意中形成岛的情况。在这项工作中,提出了一种适用于研究无意孤岛GTI行为的SRF-PLL模型的基于动态相量的复杂域分析。该模型针对UPF以及负载条件变化的情况下GTI的其他运行功率因数,准确预测了意外岛形成后系统的稳态运行频率。提出了在4.5kVA三相GTI系统上进行的孤岛化的仿真和实验结果,验证了所提出的分析方法和所得的系统模型。

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