Title :
Three-phase soft-switching inverter resonant with unique resonant snubbers
Author :
Yamamoto, H. ; Kaneda, Michiru ; Nakaoka, Mutsuo
Author_Institution :
Dept. of Electr. & Electron. Eng., Yamaguchi Univ., Japan
Abstract :
In this paper, a prototype of the auxiliary resonant commutated snubber circuit (ARCS) with a high frequency transformer power regeneration loop is described. This is a new soft switching topology developed for three phase voltage source soft-switching inverter, active power filter and reactive power compensator has the significant advantage of current rating reduction for auxiliary active switching devices. In addition, this paper presents a novel prototype of voltage-source soft switching space vector-modulated inverter with ARCS mentioned above, which is more suitable and acceptable for high-power utility interactive power conditioning, along with a digital control scheme. The steady-state operating analysis of ARCS has the remarkable features and the practical design procedure of this resonant snubber are illustrated on the basis of computer simulation analysis. The operating performance evaluations in the steady-state of this three phase voltage source soft switching inverter are discussed and compared with the three phase voltage source hard switching inverter
Keywords :
DC-AC power convertors; PWM invertors; high-frequency transformers; power transformers; resonant power convertors; snubbers; switching circuits; active power filter; auxiliary active switching devices; auxiliary resonant commutated snubber circuit; computer simulation; current rating reduction; high-frequency transformer power regeneration loop; operating performance; power conditioning; reactive power compensator; soft switching topology; space vector modulation; steady-state operating analysis; three phase voltage source soft-switching inverter; three-phase soft-switching resonant inverter; unique resonant snubbers; Active filters; Circuit topology; Frequency; Inverters; Prototypes; RLC circuits; Resonance; Snubbers; Steady-state; Voltage;
Conference_Titel :
Power Electronics and Drive Systems, 1999. PEDS '99. Proceedings of the IEEE 1999 International Conference on
Print_ISBN :
0-7803-5769-8
DOI :
10.1109/PEDS.1999.792858