Dual-Circulant Modulation for Modular Multilevel DC/DC Converters With Inherent Balance Capability

Modular multilevel dc/dc converters (MMDC) have emerged recently for medium-voltage dc applications. Under single-circulant modulation, the submodule (SM) capacitor voltages in MMDC are found to be evenly divided only at some specific modulation coefficients. To obtain the inherent balance capabilit...

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Veröffentlicht in:IEEE transactions on power electronics 2023-07, Vol.38 (7), p.7958-7963
Hauptverfasser: Duan, Jinpei, Zhang, Donglai, Wang, Xiongfei, Gu, Runan, Wang, Chao, Liu, Zhigang
Format: Artikel
Sprache:eng
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Zusammenfassung:Modular multilevel dc/dc converters (MMDC) have emerged recently for medium-voltage dc applications. Under single-circulant modulation, the submodule (SM) capacitor voltages in MMDC are found to be evenly divided only at some specific modulation coefficients. To obtain the inherent balance capability under all modulation coefficients and expand the application range of circulant modulation, a simple dual-circulant modulation is proposed in this letter. On the basis of single-circulant modulation, the self-balancing of the SM capacitor voltages is realized by using the additional switching patterns generated by a simple circulant permutation method. The theoretical analysis of the proposed method is presented, and the inherent balance capability of MMDC under the dual-circulant modulation method is verified by experiments.
ISSN:0885-8993
1941-0107
1941-0107
DOI:10.1109/TPEL.2023.3241772