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Adjustable variable step-based MRAC MPPT for solar PV system in highly fluctuating and cloudy atmospheric conditions

  • 09-07-2023
  • Original Paper
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Abstract

The article discusses the motivation behind boosting renewable energy use, particularly solar energy, due to its clean and accessible nature. It highlights the challenges of partial shading conditions (PSC) and the need for Maximum Power Point Tracking (MPPT) to optimize solar PV power generation. The authors review traditional MPPT methods and their limitations, leading to the development of a hybrid MPPT controller that combines the advantages of Perturb and Observe (PO) and Fuzzy Logic Controller (FLC) techniques. The proposed controller, an adjustable variable step-based MRAC MPPT, is designed to adapt to dynamic weather conditions, ensuring high accuracy and fast tracking. The article presents a comprehensive analysis of the controller's performance under various test conditions, including realistic and cloudy weather, highly fluctuating atmospheric conditions, robustness tests, and partial shading conditions. The results demonstrate the superiority of the proposed controller in terms of tracking time, efficiency, and ripple reduction compared to state-of-the-art MPPT techniques. The article concludes with a laboratory-based validation of the proposed MPPT, showcasing its practical applicability and effectiveness.

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Title
Adjustable variable step-based MRAC MPPT for solar PV system in highly fluctuating and cloudy atmospheric conditions
Authors
Deepak Kumar Singh
Ashok Kumar Akella
Saibal Manna
Publication date
09-07-2023
Publisher
Springer Berlin Heidelberg
Published in
Electrical Engineering / Issue 6/2023
Print ISSN: 0948-7921
Electronic ISSN: 1432-0487
DOI
https://doi.org/10.1007/s00202-023-01922-3
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