Peng, Tao; Ding, Steven X.; Gui, Wei-Hua; Xie, Yong:
An optimal approach to H8/ H- fault detection filters
In: Dynamics of Continuous, Discrete, and Impulsive Systems B: Applications & Algorithms, Jg. 12 (2005), Heft 2b, S. 215 - 224
2005Artikel/Aufsatz in Zeitschrift
TechnikFakultät für Ingenieurwissenschaften » Elektrotechnik und Informationstechnik » Automatisierungstechnik und komplexe Systeme
Titel:
An optimal approach to H8/ H- fault detection filters
Autor*in:
Peng, Tao;Ding, Steven X.UDE
GND
134302427
LSF ID
2347
ORCID
0000-0002-5149-5918ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Gui, Wei-Hua;Xie, Yong
Erscheinungsjahr:
2005

Abstract:

An optimal design approach to fault detection filter with H° index and H1 norm for linear time invariant systems is proposed. At first a linear full-order observer is constructed and the dynamics of residual genera-tor which involves unknown inputs represented by disturbances, noise, model uncertainty and faults is acquired. The sensitivity of residual to faults is char-acterized by H° index, and the robustness of residual to unknown inputs is denoted by H1 norm respectively. By using linear matrix inequality (LMI) method, the existence condition of mixed H°/H1 fault detection observer gain and its solving approach is derived, which leads to an iterative algo-rithm for optimal solution. Finally the optimal fault detection filter can be achieved with an optimal trade-off between the sensitivity to faults and the robustness against the unknown inputs. A numerical example is employed to illustrate the effectiveness of the present approach