Title :
Voltage source-fed sinewave PWM inverter with novel pulse current regenerative resonant snubber cells for telecommunication energy
Author :
Nakamura, Mantaro ; Ahmed, Tarek ; Nakaoka, Mutsuo
Author_Institution :
Yamaguchi Univ., Japan
Abstract :
In this paper, a novel circuit topology of the active auxiliary edge resonant snubber suitable for high power soft switching inverter applications which has some salient features as compared with conventional auxiliary resonant pole type snubber is proposed in order to minimize the switching power losses of power semiconductor devices (IGBTs) in addition to the switching surge related electromagnetic noises (EMI/RFI) in high power conversion conditioning and processing circuits on the basis of the voltage source type sinewave PWM inverter and voltage source sinewave PWM PFC converter as well as bi- directional PWM converter used as the battery energy storage system. This resonant snubber-assisted inverter topology suitable for high power conversion is described and discussed on the basis of soft switching transition and commutation operation of the voltage source type high efficient pulse modulated inverter. The operation principle and operating characteristics of this active auxiliary snubber circuit are respectively described, together with the practical design procedure of this unique edge resonant snubber. Furthermore, the three phase soft switching sinewave PWM inverter with the novel auxiliary active edge resonant bridge leg link snubbers treated here is evaluated and discussed as compared with three phase hard switching sinewave PWM inverter.
Keywords :
PWM invertors; PWM power convertors; commutation; energy storage; insulated gate bipolar transistors; network synthesis; network topology; power conversion; power semiconductor devices; snubbers; telecommunication power supplies; IGBT; active auxiliary edge resonant snubber; battery energy storage system; circuit topology; commutation operation; electromagnetic noises; high power conversion; high power soft switching inverter applications; power semiconductor devices; pulse current regenerative resonant snubber cells; resonant snubber-assisted inverter topology; telecommunication energy; voltage source sinewave PWM; voltage source-fed sinewave PWM inverter; Circuit topology; Electromagnetic interference; Power semiconductor switches; Pulse inverters; Pulse width modulation inverters; Resonance; Snubbers; Switching circuits; Telecommunication switching; Voltage;
Conference_Titel :
Telecommunications Energy Conference, 2003. INTELEC '03. The 25th International
Conference_Location :
Yokohama, Japan
Print_ISBN :
4-88552-196-3