Title :
A fixed-frequency LCC-type resonant converter with inductive output filter using a modified gating scheme
Author :
Bhowmick, Sourav S. ; Bhat, Ashoka K. S.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Victoria, Victoria, BC, Canada
Abstract :
A fixed frequency, series-parallel or LCC-type resonant converter with an inductive output filter, controlled using a modified gating scheme is proposed. The converter is analyzed for steady-state using approximate complex ac circuit analysis method. Based on the analysis, a simple design procedure is given and illustrated with a design example of a 300 to 420 V DC input; 1 kW, 48 V output converter. This converter using a modified gating scheme has increased number of switches operating with zero-voltage switching. Detailed PSIM simulation results are presented to demonstrate the performance of the designed converter for wide variations in the input voltage and load conditions. The designed converter requires a narrow variation in the pulse-width of the gating signals for wide variation in the load while the peak current through the switches decrease with the load current.
Keywords :
filters; inductors; network synthesis; resonant power convertors; switching convertors; zero voltage switching; PSIM simulation; approximate complex AC circuit analysis method; fixed-frequency LCC-type resonant converter; inductive output filter; load peak current; modified gating scheme; power 1 kW; series-parallel resonant converter; voltage 300 V to 420 V; voltage 48 V; zero-voltage switching; Capacitors; Frequency conversion; Inverters; Steady-state; Switches; Voltage control; Zero voltage switching; LCC-type; dc-to-dc; fixed-frequency; modified gating scheme; resonant converter; zero-voltage switching;
Conference_Titel :
Advances in Energy Conversion Technologies (ICAECT), 2014 International Conference on
Conference_Location :
Manipal
Print_ISBN :
978-1-4799-2205-5
DOI :
10.1109/ICAECT.2014.6757077