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Modelling and industrial application of series hybrid active power filter

机译:串联混合有源电力滤波器的建模与工业应用

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In the series hybrid active power filter (SHAPF) based on fundamental magnetic flux compensation (FMFC), the harmonic voltage across the magnetising inductance of the series transformer will disturb the inverter output current and worsen the filtering effect of the SHAPF. However, this influence caused by harmonic voltage was ignored in the previous research. Therefore there is blindness and casualness in the parameter selection of the SHAPF based on FMFC. Taking a 10 kV, 1 MVA industrial application of the SHAPF in a manufacture factory in Guangdong Province as an example, this study establishes the accurate global mathematical model of the SHAPF. Furthermore, based on the proposed global mathematical model, the series transformer parameters are analysed in detail to show its influence on the filtering performance of the SHAPF. This mathematical model can be used as foundations of the parameter selection of the SHAPF. Finally, an engineering prototype is manufactured and applied. The practical experimental results verify the theoretical analysis.
机译:在基于基本磁通量补偿(FMFC)的串联混合有源电力滤波器(SHAPF)中,串联变压器励磁电感两端的谐波电压会干扰逆变器的输出电流,并使SHAPF的滤波效果变差。然而,由谐波电压引起的这种影响在先前的研究中被忽略了。因此,基于FMFC的SHAPF的参数选择存在盲目性和随意性。以广东省某制造厂的SHAPF在10 kV,1 MVA的工业应用为例,建立了SHAPF的精确全局数学模型。此外,在提出的全局数学模型的基础上,详细分析了串联变压器参数,以显示其对SHAPF滤波器性能的影响。该数学模型可以用作SHAPF参数选择的基础。最后,制造并应用了工程样机。实际实验结果验证了理论分析。

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    《Power Electronics, IET》 |2013年第8期|1707-1714|共8页
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