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A novel shunt hybrid active power filter based on magnetic flux compensation
13
Citations
6
References
2009
Year
Electrical EngineeringEngineeringFilter (Signal Processing)Harmonic MitigationMagnetic Flux CompensationPower Electronics ConverterFilter DesignElectric Power ConversionDigital FilterPower ElectronicsNovel ShuntActive Power Filter
Abstract In this article, the principle of a novel shunt hybrid active power filter (APF) based on magnetic flux compensation is proposed. The parallel transformer can exhibit nearly zero impedance to harmonic current whereas the zero magnetic flux condition is satisfied for harmonics, which leads harmonic current to flow into the transformer branch. Meanwhile, the transformer can exhibit continuously adjustable impedance to the fundamental current based on fundamental magnetic flux compensation, which works together with the passive power filter to compensate for reactive power. A mathematical model is established for system stability analysis and steady state estimation. The experimental results verify that the performance of the proposed APF is satisfactory in harmonic suppression as well as reactive power compensation. Keywords: active power filtermagnetic flux compensationtransformermathematical modelstability analysis Acknowledgements This work was supported by the National Natural Science Foundation of China under Project 50477047.
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