Comprehensive Physical Commutation Characteristic Analysis and Test of Hybrid Line Commutated Converter Based on Physics Compact Model of IGCT

集成门极换流晶闸管 减刑 晶闸管 正确性 缓冲器 电子工程 工程类 电气工程 计算机科学 物理 电压 电容器 算法
作者
Zhanqing Yu,Zongze Wang,Chaoqun Xu,Xuan Zhou,Zhengyu Chen,Chunpin Ren,Rong Zeng
出处
期刊:IEEE Transactions on Power Electronics [Institute of Electrical and Electronics Engineers]
卷期号:38 (2): 1924-1934 被引量:1
标识
DOI:10.1109/tpel.2022.3213490
摘要

In order to mitigate commutation failure of high voltage direct current (HVdc) system, a novel hybrid line commutated converter (H-LCC) based on integrated gate commutated thyristor (IGCT) and thyristor has been proposed. To verify the proposed scheme's effectiveness and correctness, the physics-based compact model of reverse blocking IGCT (RB-IGCT) and physics-based model of thyristor are established in this article. By comparing the features of physics-based model with other simulation methods, it can be observed that the former has obvious advantages. On the basis, a simulation study of proposed H-LCC based on physics compact model of RB-IGCT and physics-based model of thyristor is conducted to analyze the physical commutation characteristics comprehensively, which is verified by equivalent commutation tests. The H-LCC can mitigate commutation failure of HVdc effectively and physics-based model of H-LCC is expected to be applied in the simulation of dc grid equipment and provide reference for commutation characteristics analysis and snubber parameter optimization that need rapid and multiple simulations.

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