Fatemeh Ramezanikouchaki
Design, Analysis, and Control of a PV-Fed Resonant Active-Bridge-Based DC-DC Battery Charger.
Rel. Francesco Musolino, Paolo Stefano Crovetti, Stefano Cerutti. Politecnico di Torino, Corso di laurea magistrale in Ingegneria Elettronica (Electronic Engineering), 2026
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Abstract
During the last few decades utilizing the solar energy has been experiencing vast progress. The conversion of solar energy to electricity is done through photo-voltaic (PV) panels; where, the solar irradiation is converted to direct current (DC) form of electric energy. In order to harness the energy from the solar PV panels often a DC-to-DC power electronics converter is needed where it should extract the maximum energy. These DC-DC converters should obey different requirements including, but not limited to, efficiency, power density, low electromagnetic interference (EMI), and low cost. To meet these requirements, this thesis involves modeling, analysis, design, control, and PCB development of a PV-fed DC-DC power electronics converter for battery charging application; where, MPPT control strategy and voltage control are explored.
In this thesis a novel resonant-based DC-DC power converter is developed as the interface between a single PV panel and a 4-cell battery to extract the maximum power from the PV panel for charging the battery; while, maintaining a safe charging profile as well
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