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ANN-Based Real-Time Optimal Voltage Control In Islanded AC Microgrids

Permanent link
https://hdl.handle.net/10037/35852
DOI
https://doi.org/10.1109/PEDG61800.2024.10667427
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Accepted manuscript version (PDF)
Date
2024-09-18
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Author
Derbas, Abd Alelah; Bordin, Chiara; Mishra, Sambeet; Blaabjerg, Frede
Abstract
The purpose of this paper is to explore an innovative primary control strategy for a voltage source inverter (VSI). This strategy involves integrating an Artificial Neural Network (ANN) into the proportional resonant (PR) regulator within the inner loop of the primary control system. The primary objective is to regulate the output voltage and minimize deviations under various operating conditions, thereby enhancing the inverter's overall performance. The ANN, employed as a predictive analytic method, facilitates real-time tuning of the PR controller parameters. In addition, the outer level of primary control incorporates a droop control loop to distribute power among distributed generators (DG). This proposed approach reduces the converter control system's reliance on specific operating conditions and seamlessly accommodates varying loading conditions. To ensure adaptability and stability in various operating conditions, real-time simulations are implemented using OPAL-RT (OP4510), and the results demonstrate the efficacy of the proposed control strategy.
Publisher
IEEE
Citation
Derbas AA, Bordin C, Mishra S, Blaabjerg F. ANN-Based Real-Time Optimal Voltage Control In Islanded AC Microgrids . IEEE International Symposium on Power Electronics for Distributed Generation Systems (PEDG). 2024:1-5
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Copyright 2024 The Author(s)

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