首页> 外文会议>Industrial Electronics Society, 2003. IECON '03. The 29th Annual Conference of the IEEE >A pulse current regenerative auxiliary resonant bridge leg link snubber-assisted three-phase soft switching PWM inverter
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A pulse current regenerative auxiliary resonant bridge leg link snubber-assisted three-phase soft switching PWM inverter

机译:脉冲电流再生辅助谐振桥式支路缓冲器辅助三相软开关PWM逆变器

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In this paper, a novel circuit topology of active auxiliary edge resonant snubber suitable for high power soft switching PWM inverter applications, which has some salient features as compared with previously developed auxiliary resonant commutated pole (ARCP) snubber is proposed in order to minimize the switching power losses of IGBTs in addition to the switching surge related electromagnetic noises in three-phase power conversion circuits on the basis of the sinewave PWM inverter and sinewave PWM PFC rectifier as well as bi-directional PWM converter used as the battery energy storage system. This resonant snubber-assisted inverter suitable for high power conversion is described and discussed on the basis of soft switching transition and commutation operation of the high efficient pulse modulated inverter. The working principle and operating characteristics of this active auxiliary snubber circuit are described, together with the practical design procedure of this unique edge resonant snubber. This paper shows actual efficiency vs. output power characteristic of three-phase soft switching PWM double converter system designed for 10 kVA UPS composed of three phase soft switching PWM rectifier and inverter. The total actual efficiency of three phase soft switching PWM double converter is 88.6% as compared with that of hard switching double converter is 87.0% under a rated load.
机译:本文提出了一种适用于大功率软开关PWM逆变器应用的有源辅助边沿谐振缓冲器的新型电路拓扑,与以前开发的辅助谐振换向极(ARCP)缓冲器相比,它具有一些显着的特征,以最大程度地减少开关基于正弦波PWM逆变器和正弦波PWM PFC整流器以及用作电池储能系统的双向PWM转换器,除了三相功率转换电路中与开关浪涌相关的电磁噪声外,IGBT的功率损耗也有所增加。在高效脉冲调制逆变器的软开关转换和换向操作的基础上,对适用于高功率转换的这种谐振缓冲器辅助逆变器进行了描述和讨论。描述了这种有源辅助缓冲电路的工作原理和工作特性,以及这种独特的边缘谐振缓冲电路的实际设计过程。本文显示了专为10 kVA UPS设计的三相软开关PWM双变频器系统的实际效率与输出功率特性,该系统由三相软开关PWM整流器和逆变器组成。在额定负载下,三相软开关PWM双转换器的总实际效率为88.6%,而硬开关双转换器的总实际效率为87.0%。

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