High conversion gain of voltage is generally required to interface various renewable energy sources, such as PV modules. This paper focuses on the optimal analysis and design of non-isolated DC-DC converters to meet the high-step-up gain requirement and achieve high efficiency. The proposed topology utilizes the coupled inductor technique to achieve high step-up voltage conversion ratio. A power loss model is developed to identify losses in each component for efficiency enhancement. The switch has relatively low voltage stress since leakage energy is directly transferred to the output to avoid voltage spikes across it. In addition, the coupled inductor alleviated the reverse recovery issue of the diode. The circuit operation and steady-state analysis of the proposed converter are presented in detail. A prototype circuit is built and tested to prove the circuit analysis and optimal design.
History
Publication title
Proceedings of the 2018 IEEE International Symposium on Industrial Electronics (ISIE)
Pagination
439-444
ISSN
2163-5145
Department/School
School of Engineering
Publisher
IEEE-Inst Electrical Electronics Engineers Inc
Place of publication
New Jersey, USA
Event title
2018 IEEE International Symposium on Industrial Electronics (ISIE)
Event Venue
Cairns
Date of Event (Start Date)
2018-06-13
Date of Event (End Date)
2018-06-15
Rights statement
Copyright 2018 IEEE
Repository Status
Restricted
Socio-economic Objectives
Industrial energy efficiency; Solar-photovoltaic energy