TY - JOUR
T1 - Performance-Based Fault-Tolerant Control Uniformly Accommodating Multiple Levels of Actuation Failures
AU - Cao, Ye
AU - Wang, Xinjun
AU - Ma, Yajing
AU - Cao, Jianfu
AU - Song, Yongduan
N1 - Publisher Copyright:
© 1963-2012 IEEE.
PY - 2024
Y1 - 2024
N2 - Most existing fault-tolerant control schemes either are contingent upon timely and accurate fault identification or need to be redesigned whenever the types/phases of actuator failures change, rendering the control design rather complex. In this work, a dynamic hardware redundancy technique with a performance-based trivial fault detector is proposed to accommodate multiple levels of actuator failures, upon which a unified performance-based fault-tolerant control scheme is developed irrespective of different phases of actuator failures. The proposed fault-tolerant control exhibits several salient features, which include the following: by choosing appropriate performance functions, the controller is developed under a unified control structure against different actuation phases ranging from healthy actuation and moderate failure actuation to post extreme failure actuation; the faulty actuator is replaced with the backup one only in the event of extreme failures, avoiding the unnecessary replacement during moderate actuation failure; and without the need for neural networks or fuzzy systems based approximation, the resultant control scheme is simple in structure and inexpensive in computation.
AB - Most existing fault-tolerant control schemes either are contingent upon timely and accurate fault identification or need to be redesigned whenever the types/phases of actuator failures change, rendering the control design rather complex. In this work, a dynamic hardware redundancy technique with a performance-based trivial fault detector is proposed to accommodate multiple levels of actuator failures, upon which a unified performance-based fault-tolerant control scheme is developed irrespective of different phases of actuator failures. The proposed fault-tolerant control exhibits several salient features, which include the following: by choosing appropriate performance functions, the controller is developed under a unified control structure against different actuation phases ranging from healthy actuation and moderate failure actuation to post extreme failure actuation; the faulty actuator is replaced with the backup one only in the event of extreme failures, avoiding the unnecessary replacement during moderate actuation failure; and without the need for neural networks or fuzzy systems based approximation, the resultant control scheme is simple in structure and inexpensive in computation.
KW - Actuator failures
KW - fault-tolerant control
KW - performance recovery
KW - prescribed performance
UR - https://www.scopus.com/pages/publications/85194867146
U2 - 10.1109/TAC.2024.3405816
DO - 10.1109/TAC.2024.3405816
M3 - 文章
AN - SCOPUS:85194867146
SN - 0018-9286
VL - 69
SP - 8018
EP - 8025
JO - IEEE Transactions on Automatic Control
JF - IEEE Transactions on Automatic Control
IS - 11
ER -