Title :
Operation of the LCC-type parallel resonant converter as a low harmonic rectifier
Author :
Belaguli, V. ; Bhat, A.K.S.
Author_Institution :
Dept. of Electr. & Comput. Eng., Victoria Univ., BC, Canada
Abstract :
A single-phase high frequency transformer isolated AC-to-DC controlled rectifier with low line current harmonic distortion using a variable frequency controlled LCC-type (or series-parallel) resonant power converter (SPRC) is presented. A simple analysis and design procedure is used for designing the power converter for low line current harmonic distortion and high power factor operation. The converter performance characteristics have been verified with SPICE3 simulations (without active control) and experimental prototype SPRC (rated at 150 W, with and without active control, for variation in load as well as line voltage). When operated with active current shaping, this power converter operates in zero-voltage-switching mode for complete range, maintaining a power factor close to unity with low line current distortion and low peak current compared to parallel resonant power converters
Keywords :
AC-DC power convertors; SPICE; circuit analysis computing; harmonic distortion; high-frequency transformers; power engineering computing; power system harmonics; power transformers; rectifying circuits; resonant power convertors; switching circuits; AC-to-DC controlled rectifier; LCC-type parallel resonant power converter; SPICE3 simulations; active current shaping; high frequency transformer; line current harmonic distortion; low harmonic rectifier; performance characteristics; power factor; zero-voltage-switching mode; Electric variables control; Frequency conversion; Hafnium; Reactive power; Rectifiers; Resonance; Switches; Switching frequency; Zero current switching; Zero voltage switching;
Conference_Titel :
Applied Power Electronics Conference and Exposition, 1996. APEC '96. Conference Proceedings 1996., Eleventh Annual
Conference_Location :
San Jose, CA
Print_ISBN :
0-7803-3044-7
DOI :
10.1109/APEC.1996.500433