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01-06-2024 | Original Paper

Minimizing voltage fluctuation in stand-alone microgrid system using a Kriging-based multi-objective stochastic optimization algorithm

Authors: S. Ida Evangeline, K. Baskaran, S. Darwin

Published in: Electrical Engineering | Issue 6/2024

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Abstract

The article introduces a Kriging-based multi-objective stochastic optimization algorithm designed to minimize voltage fluctuations in stand-alone microgrid systems. The study highlights the importance of optimizing the size of distributed energy sources, such as wind and solar, to balance cost, emissions, reliability, and voltage stability. By incorporating stochastic Kriging metamodeling, the proposed algorithm effectively handles uncertainties in renewable energy sources and load demands. The methodology is validated through comprehensive case studies, demonstrating significant improvements in system performance compared to existing approaches. The results showcase the algorithm's potential to optimize microgrid design, making it a valuable resource for professionals in the energy sector.

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Metadata
Title
Minimizing voltage fluctuation in stand-alone microgrid system using a Kriging-based multi-objective stochastic optimization algorithm
Authors
S. Ida Evangeline
K. Baskaran
S. Darwin
Publication date
01-06-2024
Publisher
Springer Berlin Heidelberg
Published in
Electrical Engineering / Issue 6/2024
Print ISSN: 0948-7921
Electronic ISSN: 1432-0487
DOI
https://doi.org/10.1007/s00202-024-02497-3