Beschreibung
Distributed energy sources (DERs) have diverted the intention of power producers to fulfill their energy demands and mitigate energy crises. Different renewable energy sources such as wind, solar photovoltaic (PV) fuel cell (FC) are commonly used sources, but solar photovoltaic (PV) attracted the intention of research in recent years because of its abundant availability. The output voltage of photovoltaic and fuel cell system is very low. Mostly conventional boost converter is used to increase the output voltages from low input voltages systems. The main disadvantage of conventional boost converter is cannot work in high ration duty cycle because of limited switching frequency and minimum OFF time of transistor switches. This work presents some new topologies of DC-DC boost converters which can provide high voltage gain as well as lowers switching stress across the semiconductor devices. One high step-up DC-DC converter named as a DC-DC boost converter with extended voltage gain is proposed. This proposed converter introduced to reduce losses and voltage stresses on circuit components.
Autorenporträt
Dr. Muhammad Zeeshan Malik got his master degree in electrical engineering from Chongqing University China in 2012. In 2013 he got PhD degree in Electrical Engineering Department of Zhejiang University. His research interests in the area of power electronics, power system, and renewable energy technologies etc.
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