DocumentCode
234628
Title
Minimum entropy fault tolerant control for non-Gaussian singular stochastic distribution system
Author
Lina Yao ; Junjie Xu ; Fangyan Xu
Author_Institution
Sch. of Electr. Eng., Zhengzhou Univ., Zhengzhou, China
fYear
2014
fDate
28-30 July 2014
Firstpage
3041
Lastpage
3046
Abstract
This paper presents a new fault diagnosis (FD) and fault tolerant control (FTC) algorithm for a discrete-time non- Gaussian singular stochastic distribution control (SDC) system. Different from general SDC systems, the difficulty increases in the FD and FTC design of the singular SDC system as the relationship between the weights and the control input is expressed by a singular state space mode. Adaptive observer is used to diagnose the fault of the singular stochastic distribution system. Furthermore, the gain of the observer and adaptive updated law can be formulated by solving the corresponding linear matrix inequality (LMI) approach. Entropy is used to represent the output randomness of the non-Gaussian stochastic system when the target probability density function (PDF) is not known in advance. Based on the estimated fault information, the controller is reconfigured by minimizing the performance function with regard to the entropy subject to mean constraint. The reconfigured controller can make the output of the post-fault SDC system still have minimum uncertainty, leading to the minimum entropy FTC of the non-Gaussian singular SDC system. Computer simulations are given to demonstrate the validity of the fault diagnosis and minimum entropy FTC algorithms.
Keywords
control system synthesis; discrete time systems; fault diagnosis; fault tolerant control; linear matrix inequalities; state-space methods; statistical analysis; stochastic systems; FD design; FTC design; LMI approach; PDF; SDC system; adaptive observer; controller reconfiguration; discrete-time non-Gaussian singular stochastic distribution control; fault diagnosis; linear matrix inequality; minimum entropy fault tolerant control; observer gain; post-fault SDC system; probability density function; singular state space mode; Entropy; Equations; Fault diagnosis; Fault tolerance; Fault tolerant systems; Mathematical model; Stochastic processes; Fault tolerant control; Minimum entropy; Probability density function; SDC system; Singular;
fLanguage
English
Publisher
ieee
Conference_Titel
Control Conference (CCC), 2014 33rd Chinese
Conference_Location
Nanjing
Type
conf
DOI
10.1109/ChiCC.2014.6897126
Filename
6897126
Link To Document