Modeling and Control of the Average Input Current for Three-Phase Interleaved Boost Converters


This paper reports a comprehensive optimization method of the associated passive components of three-part front-end interleaved boost converters to reinforce the facility density. The consequences of the circulating zero-sequence current between the rectifiers were analyzed very well, and also the mean input current model was developed in the presence of a circulating current. The model was then incorporated into the event of a physics-based average current controller to complete the input current low-order harmonic distortions while not sacrificing the system power density. The proposed technique is anticipated to be an engaging resolution for enhancing the ability density of client electronic applications required to satisfy the harmonic rules.

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