TY - GEN
T1 - LC Parameter Analysis of a Novel IGCT-Based Hybrid DCCL
AU - Peng, Long
AU - Guo, Jiahao
AU - Xiao, Xiaolong
AU - Wu, Yifei
AU - Wu, Yi
AU - Shi, Mingming
AU - Wang, Zixiang
AU - Kang, Ziteng
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - DC current limiter (DCCL)is a key device in DC power grid, it can effectively inhibit the rising rate of shortcircuit current to protect the further turn-off process. However, the traditional solid-state DCCL tends to have massive throughcurrent loss and the commutation capability of semiconductor still needs to be improved. Therefore, this article adopts a hybrid DCCL containing high-speed switch (HSS) which not only to realize fast short-circuit current limitation, but also has low line loss. Specifically, this hybrid DCCL realizes current sharing as well as current freewheeling through reverse series connection of IGCTs which to help HSS to get better dielectric recovery time. In this article, the analysis of the operation principle of the IGCT-based hybrid DCCL has been made firstly. Then, we find that the dielectric recovery time of the HSS is increasing as the inductor value decreases and the capacitor value increases. However, at the same time, the peak value of the pulse current on the IGCTs also increases due to the increased energy storage on the LC branch. Finally, through the simulation of the key parameters of the LC path branch, a reasonable range of inductor and capacitor values were proposed as a reference for design.
AB - DC current limiter (DCCL)is a key device in DC power grid, it can effectively inhibit the rising rate of shortcircuit current to protect the further turn-off process. However, the traditional solid-state DCCL tends to have massive throughcurrent loss and the commutation capability of semiconductor still needs to be improved. Therefore, this article adopts a hybrid DCCL containing high-speed switch (HSS) which not only to realize fast short-circuit current limitation, but also has low line loss. Specifically, this hybrid DCCL realizes current sharing as well as current freewheeling through reverse series connection of IGCTs which to help HSS to get better dielectric recovery time. In this article, the analysis of the operation principle of the IGCT-based hybrid DCCL has been made firstly. Then, we find that the dielectric recovery time of the HSS is increasing as the inductor value decreases and the capacitor value increases. However, at the same time, the peak value of the pulse current on the IGCTs also increases due to the increased energy storage on the LC branch. Finally, through the simulation of the key parameters of the LC path branch, a reasonable range of inductor and capacitor values were proposed as a reference for design.
KW - Lc factors design
KW - current-limiting factor
KW - direct current current limiter
KW - simulation analysis
UR - https://www.scopus.com/pages/publications/85215092886
U2 - 10.1109/ICEPE-ST61894.2024.10792491
DO - 10.1109/ICEPE-ST61894.2024.10792491
M3 - 会议稿件
AN - SCOPUS:85215092886
T3 - ICEPE-ST 2024 - 7th International Conference on Electric Power Equipment - Switching Technology
SP - 907
EP - 910
BT - ICEPE-ST 2024 - 7th International Conference on Electric Power Equipment - Switching Technology
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 7th International Conference on Electric Power Equipment - Switching Technology, ICEPE-ST 2024
Y2 - 10 November 2024 through 13 November 2024
ER -