Investigation on IGCT-based NPC/H-bridge large power converter

Zhiming Lan, Yao-hua Li, Chongjian Li, Chunyi Zhu, Chengsheng Wang
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Abstract

Nowadays the medium and high voltage large power AC-DC-AC converters are widely used in various industrial fields. The integrated gate commutated thyristor (IGCT) is applied to these converters on a large scale due to its high rated voltage and current and other excellent characteristics. In this paper the investigation on IGCT-based NPC/H-bridge large power converter is proposed. The converter is composed of two IGCT-based five-level NPC/H-bridge converters and their outputs are in parallel connection. Each phase of the five-level NPC/H-bridge converter is composed of two IGCT-based three-level neutral point clamped (NPC) legs in an H-bridge form. The converter adopts modular design and the module of IGCT-based three-level NPC legs has been developed. The turn off characteristics of IGCT are investigated and tested. At last one type of carrier-based modified in-phase disposition (IPD) modulation scheme is simulated.
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基于igct的NPC/ h桥大功率变换器研究
目前,中高压大功率交-直-交变换器广泛应用于各个工业领域。集成栅极整流晶闸管(IGCT)以其高额定电压和电流等优良特性被广泛应用于变换器中。本文提出了基于igct的NPC/ h桥大功率变换器的研究。该变换器由两个基于igct的五电平NPC/ h桥变换器组成,其输出并联。五电平NPC/ h桥变换器的每一相由两个基于igct的三电平中性点箝位(NPC)腿组成h桥形式。该变换器采用模块化设计,开发了基于igct的三级NPC支腿模块。对IGCT的关断特性进行了研究和测试。最后对一种基于载波的改进同相配置(IPD)调制方案进行了仿真。
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