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Experimental implementation of an electronic load for global maximum power point tracking

Aliaga, Rodrigo et al · RI ITBA · 2022

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"This work deals with the partial shading effect in the power curve of a PV solar array. Using a semiconductor device - MOSFET or IGBT - as electronic load added to a buck converter, it is possible to scan the power curve of a photovoltaic string and therefore empirically determine its optimum voltage, even in presence of partial shading. The aim of this paper is to give experimental details regarding the laboratory implementation of a proof-of-concept prototype meant to detect the Global Maximum Power Point. Three cases are presented that consider the partial shading effect of a PV string, with disturbances of different sizes and shapes. In the last part a novel exciting signal is presented, which allows to reduce the scanning time of the power curve. The experimental results illustrate the performance of the implemented circuit."

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APA 7

Aliaga, R. E. A. (2022). Experimental implementation of an electronic load for global maximum power point tracking. RI ITBA. https://ri.itba.edu.ar/handle/20.500.14769/3955

MLA

Aliaga, Rodrigo et al. Experimental implementation of an electronic load for global maximum power point tracking. RI ITBA, 2022. https://ri.itba.edu.ar/handle/20.500.14769/3955.

Chicago

Aliaga, Rodrigo et al. 2022. Experimental implementation of an electronic load for global maximum power point tracking. RI ITBA. https://ri.itba.edu.ar/handle/20.500.14769/3955.

Harvard

Aliaga, R. E. A. 2022, Experimental implementation of an electronic load for global maximum power point tracking, RI ITBA, available at: https://ri.itba.edu.ar/handle/20.500.14769/3955 [Accessed 8 Aug. 2026].

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Title
Experimental implementation of an electronic load for global maximum power point tracking
Author / contributors
Aliaga, Rodrigo et al
Publisher
RI ITBA
Publication year
2022
Language
English

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