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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Generalized coupling resonance modeling, analysis, and active damping of multi-parallel inverters in microgrid operating in grid-connected mode
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Generalized coupling resonance modeling, analysis, and active damping of multi-parallel inverters in microgrid operating in grid-connected mode

机译:并网模式下微电网中多并联逆变器的广义耦合共振建模,分析和有源阻尼

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This paper firstly presents an equivalent coupling circuit modeling of multi-parallel inverters in microgrid operating in grid-connected mode. By using the model, the coupling resonance phenomena are explicitly investigated through the mathematical approach, and the intrinsic and extrinsic resonances exist widely in microgrid. Considering the inverter own reference current, other inverters reference current, and grid harmonic voltage, the distributions of resonance peaks with the growth in the number of inverters are obtained. Then, an active damping control parameter design method is proposed to attenuate coupling resonance, and the most salient feature is that the optimal range of the damping parameter can be easily located through an initiatively graphic method. Finally, simulations and experiments verify the validity of the proposed modeling and method.
机译:本文首先提出了在并网模式下微电网中多并联逆变器的等效耦合电路模型。通过该模型,通过数学方法明确地研究了耦合共振现象,并且在微电网中广泛存在着固有和外部共振。考虑到逆变器自身的参考电流,其他逆变器的参考电流以及电网谐波电压,可以得到随着逆变器数量增加谐振峰的分布。然后,提出了一种主动阻尼控制参数的设计方法,以减小耦合共振,其最显着的特征是可以通过主动的图形方法轻松地确定阻尼参数的最佳范围。最后,仿真和实验验证了所提模型和方法的有效性。

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