Fixed Switching Frequency Model Predictive Control for Grid-Forming Inverters
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Huom! Tiedosto avautuu julkiseksi: 21.02.2027
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©2025 IEEE.
This paper proposes a Fixed Switching Frequency Model Predictive Control (FSF-MPC) for Grid-Forming Inverters (GFIs) in microgrids. The inner voltage and current loops are implemented by means of the proposed FSF-MPC, and the primary control is composed by an outer Droop and a PQ controller. Such a PQ control allows a better steady-state response and enhanced power management. The performance of the proposed FSF-MPC for grid-tied and islanded modes is demonstrated using as an example an ac microgrid equipped with 50kVA grid-forming inverters with output LC filters and different loads. The microgrid is implemented in a Hardware-in-the-Loop (HIL) device, and HIL case studies are presented for grid-tied and islanded modes, with load and parametric variations and weak grid conditions. The results demonstrate the good performance of the proposed FSF-MPC approach for GFIs in microgrids, such as fast dynamic response, multi variable control, adequate load sharing between the inverters and robustness to parametric variations and unmodeled dynamics.
Emojulkaisu
ISBN
ISSN
1941-0107
0885-8993
0885-8993
Aihealue
Kausijulkaisu
IEEE transactions on power electronics
OKM-julkaisutyyppi
A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä
