Zhong, Maiying; Ding, Steven X.; Lam, James; Wang, Haibo:
An Optimization Approach to Fault Detection Observer Design for Neutral Delay Systems
In: Dynamics of Continuous, Discrete and Impulsive Systems : Series B: Applications & Algorithms, Vol. 11 (2004), No. 6B, pp. 701 - 720
2004article/chapter in journal
TechnologyFaculty of Engineering » Engineering and Information Technology » Automatic Control and Complex Systems
Title:
An Optimization Approach to Fault Detection Observer Design for Neutral Delay Systems
Author:
Zhong, Maiying;Ding, Steven X.UDE
GND
134302427
LSF ID
2347
ORCID
0000-0002-5149-5918ORCID iD
Other
connected with university
;
Lam, James;Wang, Haibo
Year of publication:
2004

Abstract:

In this contribution, problems related to the optimization design of observer- based fault detection system are studied for a class of neutral time-delay systems with unknown inputs. The basic idea is first to introduce a state-memoryless observer-based fault detection filter (FDF) as the residual generator; and then to formulate such a FDF design task as an optimization problem aiming at increasing the robustness of residual to unknown input as well as plant input, while simultaneously enhancing the sensitivity of residual to faults. The main results consist of the formulation of such an FDF design optimization problem and the derivation of solvable conditions, and a systematic solution procedure. The residual evaluation problem is also considered which includes the deter- mination of residual evaluation function and threshold. A numerical example is used to demonstrate the proposed fault detection scheme.