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Sandia National Laboratories
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Kyocera Inc
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Journal: Scientific Reports
Article Title: A novel kangaroo escape optimizer for parameter estimation of solar photovoltaic cells/modules via one, two and three-diode equivalent circuit modeling
doi: 10.1038/s41598-025-19917-4
Figure Lengend Snippet: Experimental and simulated I–V curves of the KC200GT module at 1000 W/m² irradiance under three operating temperatures (25 °C, 50 °C, and 75 °C).
Article Snippet: To further demonstrate the practical applicability of KEO, its performance is further tested on the
Techniques:
Journal: Scientific Reports
Article Title: A novel kangaroo escape optimizer for parameter estimation of solar photovoltaic cells/modules via one, two and three-diode equivalent circuit modeling
doi: 10.1038/s41598-025-19917-4
Figure Lengend Snippet: Experimental and simulated P–V curves of the KC200GT module at 1000 W/m² irradiance under three operating temperatures (25 °C, 50 °C, and 75 °C).
Article Snippet: To further demonstrate the practical applicability of KEO, its performance is further tested on the
Techniques:
Journal: Scientific Reports
Article Title: A novel kangaroo escape optimizer for parameter estimation of solar photovoltaic cells/modules via one, two and three-diode equivalent circuit modeling
doi: 10.1038/s41598-025-19917-4
Figure Lengend Snippet: Experimental and simulated I–V curves of the KC200GT module at a fixed temperature of 25 °C under five irradiance levels (200–1000 W/m²).
Article Snippet: To further demonstrate the practical applicability of KEO, its performance is further tested on the
Techniques:
Journal: Scientific Reports
Article Title: A novel kangaroo escape optimizer for parameter estimation of solar photovoltaic cells/modules via one, two and three-diode equivalent circuit modeling
doi: 10.1038/s41598-025-19917-4
Figure Lengend Snippet: Experimental and simulated P–V curves of the KC200GT module using the three-diode model at a fixed temperature of 25 °C under five irradiance levels (200–1000 W/m²).
Article Snippet: To further demonstrate the practical applicability of KEO, its performance is further tested on the
Techniques: