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Analysis of the coupling between the outer and inner control loops of a Grid-forming Voltage Source Converter

机译:并网型电压源换流器内外控制回路耦合分析

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The question of grid forming control is very different depending on the connection to a low voltage or high voltage grid. In case of higher power application, the low switching frequency may induce some stability issues. This question has been studied and some solutions have been proposed through new inner current and voltage control tuning methods. However, the possible interactions between the inner and the outer controls have not been discussed yet. Actually, in large power system, the phasor modeling approximation is used in order to ease the analysis and reduce the time computations. It assumes a good decoupling between the control loops, which allows neglecting the inner loop dynamics. This paper investigates the effectiveness of this assumption by taking some examples of tuning methods proposed in the literature and showing the ability of each method to guarantee the decoupling between controllers. In this paper, small-signal analysis tool, participation factors and parametric sensitivities are used.
机译:电网形成控制的问题根据与低压电网或高压电网的连接而有很大不同。在较高功率应用的情况下,低开关频率可能会引起一些稳定性问题。已经研究了这个问题,并通过新的内部电流和电压控制调整方法提出了一些解决方案。但是,内部和外部控件之间可能的交互作用尚未讨论。实际上,在大型电力系统中,使用相量建模近似来简化分析并减少时间计算。它假定控制回路之间有良好的去耦,从而可以忽略内部回路的动态特性。本文以文献中提出的一些调整方法为例,研究了这种假设的有效性,并展示了每种方法保证控制器之间去耦的能力。本文使用小信号分析工具,参与因子和参数敏感性。

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