TY - GEN
T1 - Switch process analysis for supply restoration using a novel hybrid soft open point
AU - Xiong, Liying
AU - Lai, Zhenhong
AU - Zhuang, Haoyan
AU - Yi, Hao
AU - Wang, Zhenxiong
AU - Yang, Zebin
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - The hybrid soft open point(HSOP) adopts the structure of mechanical switch and soft open point(SOP) in parallel, which can reduce the capacity of the converter. It's commonly used for power flow control and load transfer between two distribution networks. However, when one end of the distribution network loses power, the operation delay of the mechanical switch will cause the load power failure during the load transfer. In view of this, a novel HSOP consisting of back-to-back voltage source converters(BTB-VSC), a mechanical switch, and an anti-parallel thyristor is proposed. The proposed HSOP can avoid the load power failure caused by the mechanical switch operation delay compared to the traditional HSOP, and its feasibility is verified by simulation.
AB - The hybrid soft open point(HSOP) adopts the structure of mechanical switch and soft open point(SOP) in parallel, which can reduce the capacity of the converter. It's commonly used for power flow control and load transfer between two distribution networks. However, when one end of the distribution network loses power, the operation delay of the mechanical switch will cause the load power failure during the load transfer. In view of this, a novel HSOP consisting of back-to-back voltage source converters(BTB-VSC), a mechanical switch, and an anti-parallel thyristor is proposed. The proposed HSOP can avoid the load power failure caused by the mechanical switch operation delay compared to the traditional HSOP, and its feasibility is verified by simulation.
KW - BTB-VSC
KW - hybrid soft open point
KW - load power failure
KW - operation delay
UR - https://www.scopus.com/pages/publications/85199080286
U2 - 10.1109/IPEMC-ECCEAsia60879.2024.10567141
DO - 10.1109/IPEMC-ECCEAsia60879.2024.10567141
M3 - 会议稿件
AN - SCOPUS:85199080286
T3 - 2024 IEEE 10th International Power Electronics and Motion Control Conference, IPEMC 2024 ECCE Asia
SP - 1089
EP - 1093
BT - 2024 IEEE 10th International Power Electronics and Motion Control Conference, IPEMC 2024 ECCE Asia
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 10th IEEE International Power Electronics and Motion Control Conference, IPEMC 2024 ECCE Asia
Y2 - 17 May 2024 through 20 May 2024
ER -