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A Feedforward Ripple Reduction Control Strategy based on a Hybrid GaN/Si Interleaved Inverter

Publication ,  Conference
Lu, M; Reinotas, J; Tian, X; Goetz, SM
Published in: Conference Proceedings IEEE Applied Power Electronics Conference and Exposition APEC
January 1, 2025

While wide-bandgap (WBG) devices such as silicon carbide (SiC) and particularly gallium nitride (GaN) offer advantages such as low switching losses and high-frequency switching, they also come with higher cost per current as well as substantially lower overload and fault tolerance. Recent research suggested interleaved operation that the silicon part could take most of the load and WBG contributes only some, while it further compensates distortion. However, such a mode required fast closed-loop control with extreme demands on sensing, filtering, and control bandwidth. Additionally, previous use was limited to dc conversion, where the quasi-stationary output voltage simplifies operation. This paper proposes a novel strategy to reduce the inductor in a hybrid GaN/Si interleaved inverter and use low-bandwidth feed-back control for fundamental current distribution in combination with a feed-forward term based on ripple estimation. This approach decouples high-frequency ripple from low-frequency fundamental currents, achieving fast response and efficient ripple cancellation without the excessive demands of full bandwidth feedback control.

Duke Scholars

Published In

Conference Proceedings IEEE Applied Power Electronics Conference and Exposition APEC

DOI

EISSN

2470-6647

ISSN

1048-2334

Publication Date

January 1, 2025

Start / End Page

1754 / 1758
 

Citation

APA
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ICMJE
MLA
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Lu, M., Reinotas, J., Tian, X., & Goetz, S. M. (2025). A Feedforward Ripple Reduction Control Strategy based on a Hybrid GaN/Si Interleaved Inverter. In Conference Proceedings IEEE Applied Power Electronics Conference and Exposition APEC (pp. 1754–1758). https://doi.org/10.1109/APEC48143.2025.10977210
Lu, M., J. Reinotas, X. Tian, and S. M. Goetz. “A Feedforward Ripple Reduction Control Strategy based on a Hybrid GaN/Si Interleaved Inverter.” In Conference Proceedings IEEE Applied Power Electronics Conference and Exposition APEC, 1754–58, 2025. https://doi.org/10.1109/APEC48143.2025.10977210.
Lu M, Reinotas J, Tian X, Goetz SM. A Feedforward Ripple Reduction Control Strategy based on a Hybrid GaN/Si Interleaved Inverter. In: Conference Proceedings IEEE Applied Power Electronics Conference and Exposition APEC. 2025. p. 1754–8.
Lu, M., et al. “A Feedforward Ripple Reduction Control Strategy based on a Hybrid GaN/Si Interleaved Inverter.” Conference Proceedings IEEE Applied Power Electronics Conference and Exposition APEC, 2025, pp. 1754–58. Scopus, doi:10.1109/APEC48143.2025.10977210.
Lu M, Reinotas J, Tian X, Goetz SM. A Feedforward Ripple Reduction Control Strategy based on a Hybrid GaN/Si Interleaved Inverter. Conference Proceedings IEEE Applied Power Electronics Conference and Exposition APEC. 2025. p. 1754–1758.

Published In

Conference Proceedings IEEE Applied Power Electronics Conference and Exposition APEC

DOI

EISSN

2470-6647

ISSN

1048-2334

Publication Date

January 1, 2025

Start / End Page

1754 / 1758