TY - JOUR
T1 - Analysis and Real-Time Calculation of Postfault Current of Standard Surface-Mounted PMSM Drives With Dysfunctional Power Switches
AU - Zhang, Zeliang
AU - Hu, Yihua
AU - Luo, Guangzhao
AU - Xu, Hui
AU - Gong, Chao
N1 - Publisher Copyright:
© 1986-2012 IEEE.
PY - 2023/8/1
Y1 - 2023/8/1
N2 - Fault diagnosis and fault-tolerant control significantly rely on the knowledge of fault mechanisms and postfault states. Regarding open circuits in permanent magnet synchronous motor drives, the postfault states, especially phase voltages, depend on whether the faulty phase is conducting. Under the open-switch fault featuring dysfunctional power switches, the faulty phase is possible to conduct through the still functional diodes. In contrast, the open-phase fault completely blocks the faulty phase. However, the mechanism and effects of the open-switch conduction have not been thoroughly studied, which obscures the boundary between the open-switch fault and the open-phase fault, and fails to realize effective diagnosis and optimal fault-tolerant control. This article not only reveals the mechanism of the open-switch conduction, but also proposes a model that can calculate the postfault conducting current in real time. The proposed model provides an estimation value of the postfault current for further utilization and validates the correctness of the analysis. First, equivalent circuits are analyzed to explain the conduction condition. Subsequently, switching states fulfilling the conditions are studied, and finally, the mathematical model of the postfault current is built. The analysis and model are experimentally validated.
AB - Fault diagnosis and fault-tolerant control significantly rely on the knowledge of fault mechanisms and postfault states. Regarding open circuits in permanent magnet synchronous motor drives, the postfault states, especially phase voltages, depend on whether the faulty phase is conducting. Under the open-switch fault featuring dysfunctional power switches, the faulty phase is possible to conduct through the still functional diodes. In contrast, the open-phase fault completely blocks the faulty phase. However, the mechanism and effects of the open-switch conduction have not been thoroughly studied, which obscures the boundary between the open-switch fault and the open-phase fault, and fails to realize effective diagnosis and optimal fault-tolerant control. This article not only reveals the mechanism of the open-switch conduction, but also proposes a model that can calculate the postfault conducting current in real time. The proposed model provides an estimation value of the postfault current for further utilization and validates the correctness of the analysis. First, equivalent circuits are analyzed to explain the conduction condition. Subsequently, switching states fulfilling the conditions are studied, and finally, the mathematical model of the postfault current is built. The analysis and model are experimentally validated.
KW - Open circuits
KW - permanent magnet synchronous motor (PMSM)
KW - power switches
UR - http://www.scopus.com/inward/record.url?scp=85160235005&partnerID=8YFLogxK
U2 - 10.1109/TPEL.2023.3277913
DO - 10.1109/TPEL.2023.3277913
M3 - 文章
AN - SCOPUS:85160235005
SN - 0885-8993
VL - 38
SP - 10104
EP - 10115
JO - IEEE Transactions on Power Electronics
JF - IEEE Transactions on Power Electronics
IS - 8
ER -