Title :
A high-voltage Parallel Resonant Converter with single capacitor as an output filter
Author :
Díaz, J. ; Martín-Ramos, J.A. ; Alberto, Martin-Pernia ; Martínez, J.A. ; Villegas, P.J.
Author_Institution :
Univ. of Oviedo, Gijon, Spain
Abstract :
One of the major drawbacks of high-ratio step-up transformers is the high value of their secondary side capacitor. This value is reflected at the primary side giving rise to a non-desirable one. There are some converters which include this capacitor in the topology and can cope with it, and even more, they need it. Particularly, in high-voltage applications, we will find transformers with a large capacitance value, since they use high-ratio step-up transformers. In this kind of applications, it is always interesting not to have inductors at the output filter, with single-capacitor filters being preferred instead. Thus, one the simplest topologies, is the parallel resonant converter (PRC) with single capacitor output filter. It can be controlled by switching frequency and/or duty cycle, and makes feasible to have ZVS (zero voltage switching) in the power switches. In this paper, the PRC modelling and design, plus experimental results are shown in a prototype delivering 3.5 kV, 260 W.
Keywords :
resonant invertors; switched capacitor filters; switching convertors; transformers; zero voltage switching; capacitor; duty cycle; high-ratio step-up transformers; high-voltage applications; high-voltage parallel resonant converter; parallel resonant converters; power 260 W; power switches; single-capacitor filters; switching frequency; transformers; voltage 3.5 kV; zero voltage switching; Capacitance; Capacitors; Filters; Inductors; Partial response channels; Resonance; Topology; Transformers; Voltage control; Zero voltage switching; High-Frequency power converter; High-voltage Power converters; Modeling; Resonant converter;
Conference_Titel :
Power Electronics and Applications, 2009. EPE '09. 13th European Conference on
Conference_Location :
Barcelona
Print_ISBN :
978-1-4244-4432-8
Electronic_ISBN :
978-90-75815-13-9