TY - JOUR
T1 - Protocol-based fault detection for state-saturated systems with sensor nonlinearities and redundant channels
AU - Chen, Weilu
AU - Hu, Jun
AU - Wu, Zhihui
AU - Yi, Xiaojian
AU - Liu, Hongjian
N1 - Publisher Copyright:
© 2024 Elsevier Inc.
PY - 2024/8/15
Y1 - 2024/8/15
N2 - This paper is concerned with the protocol-based fault detection (FD) issue for state-saturated delayed nonlinear systems with both redundant channels and sensor nonlinearities. Specifically, in pursuit of relieving the communication pressure, the stochastic communication protocol is adopted, which can regulate the transmission of output signal during the communication process. Moreover, for the purpose of decreasing the negative impact of one channel failure on network communication and enhancing data reliability, the redundant channels transmission is introduced. Then, the protocol-based FD filter is constructed such that the resultant FD dynamics system attains the global asymptotic stability in mean-square sense and satisfies the H∞ performance index. Moreover, an implement-to-easy algorithm is developed to facilitate the solvability of the desirable FD filtering method. In the end, two illustrative examples are utilized to demonstrate the validity of the developed FD filtering algorithm.
AB - This paper is concerned with the protocol-based fault detection (FD) issue for state-saturated delayed nonlinear systems with both redundant channels and sensor nonlinearities. Specifically, in pursuit of relieving the communication pressure, the stochastic communication protocol is adopted, which can regulate the transmission of output signal during the communication process. Moreover, for the purpose of decreasing the negative impact of one channel failure on network communication and enhancing data reliability, the redundant channels transmission is introduced. Then, the protocol-based FD filter is constructed such that the resultant FD dynamics system attains the global asymptotic stability in mean-square sense and satisfies the H∞ performance index. Moreover, an implement-to-easy algorithm is developed to facilitate the solvability of the desirable FD filtering method. In the end, two illustrative examples are utilized to demonstrate the validity of the developed FD filtering algorithm.
KW - Fault detection
KW - Redundant channels
KW - Sensor nonlinearities
KW - State-saturated systems
KW - Stochastic communication protocol
UR - http://www.scopus.com/inward/record.url?scp=85189705458&partnerID=8YFLogxK
U2 - 10.1016/j.amc.2024.128718
DO - 10.1016/j.amc.2024.128718
M3 - Article
AN - SCOPUS:85189705458
SN - 0096-3003
VL - 475
JO - Applied Mathematics and Computation
JF - Applied Mathematics and Computation
M1 - 128718
ER -