DocumentCode :
132260
Title :
Output rectifier analysis in parallel and series-parallel resonant converters with pure capacitive output filter
Author :
Shafiei, Navid ; Ordonez, Martin ; Eberle, William
Author_Institution :
Electr. & Comput. Eng., Univ. of British Columbia, Vancouver, BC, Canada
fYear :
2014
fDate :
16-20 March 2014
Firstpage :
9
Lastpage :
13
Abstract :
This paper analyzes the behavior of a pure capacitive output filter in parallel and series-parallel resonant converters. Unlike traditional resonant voltage-and current-driven rectifiers, pure capacitive output filters present interruptions in power transfer from the transformer primary to the secondary, owing to the existence of a parallel resonant capacitor. Therefore, existing formulas for different specifications of the output rectifier (e.g., output voltage ripple, efficiency, etc.) cannot be employed. This work provides detailed analysis of, and design equations for, pure capacitive output filters to cover the characteristic behavior of this rectifier. These valuable equations can be employed in the design of both low and high voltage power supplies for a variety of applications such as telecom power supplies and medical therapy instruments. Experimental results of a 10kVDC, 1.1kW power supply are presented to validate the analysis, along with other comparative experimental examples. With the rapid growth of low and high voltage applications, the equations will benefit researchers and R&D engineers in the area of resonant power conversion.
Keywords :
power capacitors; power filters; power transformers; rectifying circuits; resonant power convertors; R&D engineer; medical therapy instrument; output rectifier analysis; output voltage ripple; parallel resonant capacitor; parallel resonant converter; power 1.1 kW; power transfer interruption; primary transformer; pure capacitive output filter; resonant current-driven rectifier; resonant power conversion; resonant voltage-driven rectifier; secondary transformer; series-parallel resonant converter; telecom power supply; voltage 10 kV; Capacitance; Capacitors; Equations; Frequency conversion; Mathematical model; Power supplies;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Applied Power Electronics Conference and Exposition (APEC), 2014 Twenty-Ninth Annual IEEE
Conference_Location :
Fort Worth, TX
Type :
conf
DOI :
10.1109/APEC.2014.6803282
Filename :
6803282
Link To Document :
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