研究目的
To analyze and implement the Autotransformer Forward-Flyback (AFF) converter for photovoltaic systems, focusing on overcoming mismatching phenomena in grid-tied PV installations by maximizing harvested power through DC-DC module integrated converters (MICs) with voltage step-down and step-up capability, low cost, and high efficiency.
研究成果
The AFF converter demonstrates high efficiency (up to 94.5%), capability for voltage step-down and step-up, and good dynamic performance without right-half-plane (RHP) zero in small signal transfer functions. Its design simplicity, using a single driver and switch, reduces cost and increases reliability, making it a promising candidate for photovoltaic applications despite some drawbacks like high voltage stresses and the need for snubber networks.
研究不足
The AFF converter has high voltage stresses in the D1 diode and MOSFET, implying worse performances. The output is not isolated from the input, and snubber networks are required to mitigate leakage inductance effects, reducing efficiency.