TY - JOUR
T1 - Robust Fault-Tolerant Control of Four-Phase Interleaved DC-DC Converter Under Switch Fault for Fuel Cell Application
AU - Zhuo, Shengrong
AU - Liu, Xinyu
AU - Huangfu, Yigeng
AU - Bai, Hao
AU - Ma, Ruiqing
AU - Wang, Shaoshuai
AU - Gao, Fei
N1 - Publisher Copyright:
© 1972-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - The multi-phase converter has been widely used for fuel cell (FC) applications. However, despite the continuous operation of the converter, the switch fault would deteriorate the control performance of the closed-loop controller, and cause increased input current ripple. To this end, in this paper, a robust fault-tolerant control based on the framework of active disturbance rejection control (ADRC) is proposed for a four-phase interleaved converter. In particular, the system control gain is updated based on the duty cycles, so that the control performance under switch fault can be maintained. On the other hand, the method of phase shift reconfiguration is proposed to suppress the input current ripple of multi-phase converters under switch fault, in which the optimal phase shift is calculated by optimizing the object function derived from the input current ripple model. The experimental results are provided to validate the effectiveness of the proposed method.
AB - The multi-phase converter has been widely used for fuel cell (FC) applications. However, despite the continuous operation of the converter, the switch fault would deteriorate the control performance of the closed-loop controller, and cause increased input current ripple. To this end, in this paper, a robust fault-tolerant control based on the framework of active disturbance rejection control (ADRC) is proposed for a four-phase interleaved converter. In particular, the system control gain is updated based on the duty cycles, so that the control performance under switch fault can be maintained. On the other hand, the method of phase shift reconfiguration is proposed to suppress the input current ripple of multi-phase converters under switch fault, in which the optimal phase shift is calculated by optimizing the object function derived from the input current ripple model. The experimental results are provided to validate the effectiveness of the proposed method.
KW - Multi-phase converter
KW - phase shift reconfiguration
KW - power switch fault
KW - robust control
UR - https://www.scopus.com/pages/publications/105029676333
U2 - 10.1109/TIA.2026.3660784
DO - 10.1109/TIA.2026.3660784
M3 - 文章
AN - SCOPUS:105029676333
SN - 0093-9994
JO - IEEE Transactions on Industry Applications
JF - IEEE Transactions on Industry Applications
ER -