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Modeling Phase-Locked Loop-Based Synchronization in Grid-Interfaced Converters

机译:在网格连接转换器中建模基于阶段锁相环的同步

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摘要

Grid converters need a synchronization which is often a phase-locked loop (PLL) to get connected to the grid. In the literature, impedance-based models using small-signal technique have been widely utilized to describe the behaviors of PLL-synchronized grid converter. However, most of them target at specific problems and are able to represent the phenomenon under certain scenarios. For the analysis during phase transient, like phase jump due to grid fault, an accurate model is still missing. To address this issue, a general impedance-based model using Maclaurin expansions for its trigonometric function approximation has been proposed in this paper, so that it can well represent the system behavior during phase transient. Moreover, different deepness of the general model can be scaled, leading to different models including phasorial model, current source model, impedance-based model with/without PLL effects. A guideline on how to choose a proper model based on the problems to be studied and grid conditions has been provided in this paper. Simulation and experimental results are given to validate the effectiveness of the model and the theoretical analysis.
机译:网格转换器需要同步,该同步通常是锁相环(PLL)以连接到网格。在文献中,使用小信号技术的基于阻抗的模型已被广泛利用来描述PLL同步电网转换器的行为。然而,他们中的大多数是在特定问题上瞄准并且能够在某些情况下代表现象。对于在相位瞬态期间的分析,如电网故障引起的相位跳跃,仍然缺少精确的模型。为了解决这个问题,本文提出了一种使用Maclaurin扩展的一般阻抗的模型,以便在本文中提出了一种近似函数近似的型号,因此它可以很好地代表阶段瞬态期间的系统行为。此外,可以缩放不同模型的不同深度,导致不同的模型,包括逐帧模型,电流源模型,基于阻抗的模型,其中没有PLL效果。关于如何根据要研究的问题和网格条件选择适当模型的指导方针。仿真和实验结果验证了模型的有效性和理论分析。

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