Analysis and design of a bidirectional cycloconverter-type high frequency link inverter with natural commutated phase angle control

In this paper a cycloconverter-type high frequency transformer link inverter with a reduced switch count is analyzed and designed. The proposed topology consists of an H-bridge inverter at the transformer's primary side and a cycloconverter with three bidirectional switches at the secondary. Al...

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Bibliographic Details
Main Authors: Salam, Zainal, Lim, N. C., Md. Ayob, Shahrin
Format: Article
Language:English
Published: Korean Institute of Power Electronics 2011
Subjects:
Online Access:http://eprints.utm.my/id/eprint/28771/1/ZainalSalam2011_AnalysisandDesignofaBidirectionalCycloconverterType.pdf
http://eprints.utm.my/id/eprint/28771/
http://dx.doi.org/10.6113/JPE.2011.11.5.677
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Summary:In this paper a cycloconverter-type high frequency transformer link inverter with a reduced switch count is analyzed and designed. The proposed topology consists of an H-bridge inverter at the transformer's primary side and a cycloconverter with three bidirectional switches at the secondary. All of the switches of the cycloconverter operate in non-resonant zero voltage and zero current switching modes. To overcome a high voltage surge problem resulting from the transformer leakage inductance, phase angle control based on natural commutation is employed. The effectiveness of the proposed inverter is verified by constructing s 750W prototype. Experimentally, the inverter is able to supply a near sinusoidal output voltage with a total harmonic distortion of less than 1%. For comparison, a PSpice simulation of the inverter is also carried out. It was found that the experimental results are in very close agreement with the simulation.