TY - JOUR
T1 - A Novel Interturn Short-Circuit Diagnosis Method for SRMs Based on Unaligned Inductance Identification Using FOTSMO
AU - Cheng, Qiyuan
AU - Dang, Bowen
AU - Bao, Chong
AU - Ge, Lefei
AU - Jiao, Ningfei
AU - Song, Shoujun
N1 - Publisher Copyright:
© 1982-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - This article proposes a novel interturn shortcircuit (ITSC) fault diagnosis method for switched reluctance motors (SRMs) based on unaligned inductance, utilizing a fractional-order terminal sliding mode observer(FOTSMO). The method addresses common ITSC faultsthat occur during SRM operation. First, the electromagneticcharacteristics of the SRM under ITSC fault conditions considering the short-circuit current are measured, and theimpact of ITSC faults on the characteristics is analyzed.A linear model of the SRM is then constructed by constraining the position and current parameters. To enhanceobserver robustness, a FOTSMO is designed to estimate theunaligned inductance. Simultaneously, a novel reaching lawis introduced to mitigate chattering. Based on experimentalresults, a definition of ITSC fault severity level is proposed,incorporating both the short-circuit current and the numberof short-circuit turns. To validate the effectiveness of theproposed method, experiments are conducted under multiple operating conditions. The results demonstrate that theproposed method can achieve ITSC fault diagnosis, particularly in cases with a low number of short-circuit turns, andis well-suited for high-speed operating conditions.
AB - This article proposes a novel interturn shortcircuit (ITSC) fault diagnosis method for switched reluctance motors (SRMs) based on unaligned inductance, utilizing a fractional-order terminal sliding mode observer(FOTSMO). The method addresses common ITSC faultsthat occur during SRM operation. First, the electromagneticcharacteristics of the SRM under ITSC fault conditions considering the short-circuit current are measured, and theimpact of ITSC faults on the characteristics is analyzed.A linear model of the SRM is then constructed by constraining the position and current parameters. To enhanceobserver robustness, a FOTSMO is designed to estimate theunaligned inductance. Simultaneously, a novel reaching lawis introduced to mitigate chattering. Based on experimentalresults, a definition of ITSC fault severity level is proposed,incorporating both the short-circuit current and the numberof short-circuit turns. To validate the effectiveness of theproposed method, experiments are conducted under multiple operating conditions. The results demonstrate that theproposed method can achieve ITSC fault diagnosis, particularly in cases with a low number of short-circuit turns, andis well-suited for high-speed operating conditions.
KW - Fault diagnosis
KW - interturn short-circuit (ITSC)
KW - sliding mode observer (SMO)
KW - switched reluctance motor (SRM)
UR - https://www.scopus.com/pages/publications/105045319713
U2 - 10.1109/TIE.2026.3711459
DO - 10.1109/TIE.2026.3711459
M3 - 文章
AN - SCOPUS:105045319713
SN - 0278-0046
JO - IEEE Transactions on Industrial Electronics
JF - IEEE Transactions on Industrial Electronics
ER -