Publication Type |
journal article |
School or College |
College of Engineering |
Department |
Electrical & Computer Engineering |
Creator |
Khan, Faisal Habib |
Other Author |
Tolbert, Leon M.; Webb, William E. |
Title |
Start-up and dynamic modeling of the multilevel modular capacitor-clamped converter |
Date |
2010-02 |
Description |
This paper will present the analytical proof of concept of the multilevelmodular capacitor-clamped converter (MMCCC). The quantitative analysis of the charge transfer mechanism among the capacitors of the MMCCC explains the start-up and steadystate voltage balancing. Once these capacitor voltages are found for different time intervals, the start-up and steady-state voltages at various nodes of the MMCCC can be obtained. This analysis provides the necessary proof that explains the stable operation of the converter when a load is connected to the low-voltage side of the circuit. In addition, the analysis also shows how the LV side of the converter is (1/N)th of theHVside excitationwhen the conversion ratio of the circuit is N. In addition to the analytical and simulation results, experimental results are included to support the analytical proof of concept. |
Type |
Text |
Publisher |
Institute of Electrical and Electronics Engineers (IEEE) |
Journal Title |
IEEE Transactions on Power Electronics |
Volume |
25 |
Issue |
2 |
First Page |
519 |
Last Page |
531 |
DOI |
10.1109/TPEL.2009.2025273 |
citatation_issn |
0885-8993 |
Language |
eng |
Bibliographic Citation |
Khan, F. H., Tolbert, L. M., & Webb, W. E. (2009). Start-up and dynamic modeling of the multilevel modular capacitor-clamped converter. IEEE Transactions on Power Electronics, 25(2), 519-31. |
Rights Management |
(c) 2009 IEEE. Personal use of this material is permitted. However, permission to reprint/republish this material for advertising or promotional purposes or for creating new collective works for resale or redistribution to servers or lists, or to reuse any copyrighted component of this work in other works must be obtained from the IEEE. |
Format Medium |
application/pdf |
Format Extent |
1,514,788 bytes |
Identifier |
ir-main,14049 |
ARK |
ark:/87278/s6fx7tz0 |
Setname |
ir_uspace |
ID |
705726 |
Reference URL |
https://collections.lib.utah.edu/ark:/87278/s6fx7tz0 |