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Experimental Validation of a Nested Control System to Balance the Cell Capacitor Voltages in Hybrid MMCs

Donoso, Felipe; Cardenas, Roberto; Espinoza, Mauricio; Clare, Jon; Mora, Andres; Watson, Alan

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Authors

Felipe Donoso

Roberto Cardenas

Mauricio Espinoza

Jon Clare

Andres Mora

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ALAN WATSON ALAN.WATSON@NOTTINGHAM.AC.UK
Associate Professor



Abstract

© 2013 IEEE. In a hybrid modular multilevel converter (MMC), capacitor voltage balance between the Full-Bridge Sub-Modules (FBSMs) and Half-Bridge Sub-Modules (HBSMs) is only possible when the arm currents are bipolar. For a grid-connected MMC, operating at unity power factor, this is typically only achievable when the modulation index is less than 2. Previous control methodologies, based on open-loop feed-forward compensating currents, have been proposed to operate an MMC with a higher modulation index. However, these solutions do not minimize the compensating currents; they cannot compensate entirely for both the variations in the operating conditions and the parameters typically encountered in a real implementation; and they do not consider the actual capacitor voltage imbalance between the FBSM and HBSMs. In this paper, a new nested closed-loop control algorithm based on an outer voltage control loop with an inner current loop is proposed and experimentally validated. Feed-forward currents are still utilised in the inner loop, but they are calculated using a new optimising algorithm which minimises the required compensating currents. Moreover, to the best of our knowledge, this is the first work where explicit algebraic equations to calculate these compensating currents are provided. Experimental results to validate the approach, obtained with an 18-cell hybrid MMC, are presented and discussed in the paper.

Citation

Donoso, F., Cardenas, R., Espinoza, M., Clare, J., Mora, A., & Watson, A. (2021). Experimental Validation of a Nested Control System to Balance the Cell Capacitor Voltages in Hybrid MMCs. IEEE Access, 9, 21965-21985. https://doi.org/10.1109/ACCESS.2021.3054340

Journal Article Type Article
Acceptance Date Jan 14, 2021
Online Publication Date Jan 25, 2021
Publication Date Jan 25, 2021
Deposit Date Mar 5, 2021
Publicly Available Date Mar 5, 2021
Journal IEEE Access
Electronic ISSN 2169-3536
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
Volume 9
Pages 21965-21985
DOI https://doi.org/10.1109/ACCESS.2021.3054340
Keywords Modular multilevel converters , hybrid MMC , sub-module capacitor balance
Public URL https://nottingham-repository.worktribe.com/output/5319678
Publisher URL https://ieeexplore-ieee-org.ezproxy.nottingham.ac.uk/abstract/document/9334998

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