研究目的
To propose a DPP converter using an LLC resonant voltage multiplier (VM) with a voltage divider (VD) to reduce voltage stresses of switches and capacitors in series-connected photovoltaic panels under partial shading.
研究成果
The proposed DPP converter using an LLC resonant VM and VD successfully reduced voltage stresses of switches and capacitors in series-connected photovoltaic panels under partial shading. Experimental verification tests demonstrated the converter's efficacy in improving energy yield and mitigating the negative impacts of partial shading. The VD's scalability allows for further reduction in voltage stresses by extending the circuit with additional components.
研究不足
The increased design difficulty should be cited as a drawback of the proposed DPP converter. The conventional DPP converters for the adjacent panel-to-panel architecture and panel-to-panel with an isolated port architecture are fully modular and can be applied to any numbers of panels connected in series without design changes. The proposed DPP converter, on the other hand, needs to be redesigned by properly designing the transformers, VD, and VM as the number of panels connected in series changes.