A New single switch DC-DC converter for PEM fuel cell-based electric vehicle system with an improved beta-fuzzy logic MPPT controller
Author:
Publisher
Springer Science and Business Media LLC
Subject
Geometry and Topology,Theoretical Computer Science,Software
Link
https://link.springer.com/content/pdf/10.1007/s00500-022-07049-0.pdf
Reference33 articles.
1. Ahmad S (2020) Design and analysis of a single switch DC–DC boost converter based on voltage lift technique. Diss. Department of Electrical and Electronic Engineering
2. Alajmi BN et al (2010) Fuzzy-logic-control approach of a modified hill-climbing method for maximum power point in microgrid standalone photovoltaic system. IEEE Trans Power Electron 26(4):1022–1030
3. Alaswad A et al (2021) Technical and commercial challenges of proton-exchange membrane (PEM) fuel cells. Energies 14(1):144
4. Aly M, Rezk H (2020) A differential evolution-based optimized fuzzy logic MPPT method for enhancing the maximum power extraction of proton exchange membrane fuel cells. IEEE Access 8:172219–172232
5. Banham D et al (2018) Critical advancements in achieving high power and stable nonprecious metal catalyst–based MEAs for real-world proton exchange membrane fuel cell applications. Sci Adv 4(3):1eaa117180
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