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On the Impedance and Stability Analysis of Dual-Active-Bridge-Based Input-Series Output-Parallel Converters in DC Systems

Yang, Jiajun; Guenter, Sandro; Buticchi, Giampaolo; Gu, Chunyang; Liserre, Marco; Wheeler, Pat

On the Impedance and Stability Analysis of Dual-Active-Bridge-Based Input-Series Output-Parallel Converters in DC Systems Thumbnail


Authors

Jiajun Yang

Sandro Guenter

Giampaolo Buticchi

Chunyang Gu

Marco Liserre



Abstract

Dual-active-bridge-based (DAB-based) input-series output-parallel (ISOP) converters have become increasingly popular due to their promising features made up of the advantages of the modular power electronics and the DAB converter. The modeling of the DAB converter and the DAB-based ISOP converter has been widely explored for control design in order to analyze the stability and improve the performance of the converter itself such as the voltage balancing and power sharing of DAB submodules. However, the modeling on the impedance of the DAB-based ISOP converter, which can be quite useful for system-level stability analysis and optimization, has not been addressed sufficiently so far. To solve this issue, this paper presents comprehensive impedance modeling of the DAB-based ISOP converter, where the output voltage control and the input voltage balancing control are applied to the converter to achieve the equal power sharing of the submodules. The proposed input impedance model and output impedance model of the DABbased ISOP converter are validated through the frequencydomain sweep in simulation and experiment. With the validated impedance models, the instability phenomenon and the frequency of the main harmonic component in oscillating waveforms can be accurately predicted at the source side and at the load side of the converter respectively.

Citation

Yang, J., Guenter, S., Buticchi, G., Gu, C., Liserre, M., & Wheeler, P. (2023). On the Impedance and Stability Analysis of Dual-Active-Bridge-Based Input-Series Output-Parallel Converters in DC Systems. IEEE Transactions on Power Electronics, 38(8), 10344-10358. https://doi.org/10.1109/TPEL.2023.3270531

Journal Article Type Article
Acceptance Date Apr 25, 2023
Online Publication Date Apr 26, 2023
Publication Date 2023-08
Deposit Date May 25, 2023
Publicly Available Date May 25, 2023
Journal IEEE Transactions on Power Electronics
Print ISSN 0885-8993
Electronic ISSN 1941-0107
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
Volume 38
Issue 8
Pages 10344-10358
DOI https://doi.org/10.1109/TPEL.2023.3270531
Keywords Electrical and Electronic Engineering
Public URL https://nottingham-repository.worktribe.com/output/20008644
Publisher URL https://ieeexplore.ieee.org/document/10109167

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