Manuel Martinez-Gomez
Distributed Control Scheme for the Coordination of Interlinking Converters in Islanded Hybrid AC/DC Multi-Microgrids
Martinez-Gomez, Manuel; Orchard, Marcos E.; Bozhko, Serhy; Wheeler, Patrick; Burgos-Mellado, Claudio
Authors
Marcos E. Orchard
Professor SERHIY BOZHKO serhiy.bozhko@nottingham.ac.uk
PROFESSOR OF AIRCRAFT ELECTRIC POWER SYSTEMS
Professor PATRICK WHEELER pat.wheeler@nottingham.ac.uk
PROFESSOR OF POWER ELECTRONIC SYSTEMS
Claudio Burgos-Mellado
Abstract
Multiple interconnected AC and DC microgrids (MGs) are being studied by academia and industry because of their benefits despite their operational challenges. Coordinating distributed generators (DGs) is complex, so communication-based controllers are proliferating in the literature. Then, this work proposes a distributed control strategy for islanded AC/DC multi-MGs interconnected by interlinking converters (ILCs). The proposed scheme is implemented in the ILCs and consists of distributed controllers that equalize global generation costs, allowing secondary control in each MG. Control actions that safeguard the saturated operation of MGs and ILCs are included in the control designs. The simultaneous operation with multiple objectives is possible due to adjusting control parameters according to a prioritization criterion. Experiments are conducted through an extensive simulated environment. The results show the proposed multi-objective controllers could maintain global optimal costs during normal operation while not overloading DGs, ILCs, subgrids, and clusters of ILCs. Further, the strategy may reduce operational costs in the long term by protecting the lifetime of critical MG components. Desynchronization of incremental costs is enforced at 15% at most under demanding conditions. Also, it is possible to operate against considerable (>250 [ms]) time delays in the tests.
Citation
Martinez-Gomez, M., Orchard, M. E., Bozhko, S., Wheeler, P., & Burgos-Mellado, C. (2025). Distributed Control Scheme for the Coordination of Interlinking Converters in Islanded Hybrid AC/DC Multi-Microgrids. IEEE Open Journal of the Industrial Electronics Society, 6, 358-379. https://doi.org/10.1109/ojies.2025.3545632
Journal Article Type | Article |
---|---|
Acceptance Date | Mar 4, 2025 |
Online Publication Date | Mar 4, 2025 |
Publication Date | 2025 |
Deposit Date | Mar 12, 2025 |
Publicly Available Date | Mar 13, 2025 |
Journal | IEEE Open Journal of the Industrial Electronics Society |
Print ISSN | 2644-1284 |
Electronic ISSN | 2644-1284 |
Publisher | Institute of Electrical and Electronics Engineers |
Peer Reviewed | Peer Reviewed |
Volume | 6 |
Pages | 358-379 |
DOI | https://doi.org/10.1109/ojies.2025.3545632 |
Public URL | https://nottingham-repository.worktribe.com/output/46313559 |
Publisher URL | https://ieeexplore.ieee.org/document/10909984 |
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Licence
https://creativecommons.org/licenses/by/4.0/
Publisher Licence URL
https://creativecommons.org/licenses/by/4.0/
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