Currently displaying 1 – 5 of 5

Showing per page

Order by Relevance | Title | Year of publication

Fault diagnosis of networked control systems

Christophe AubrunDominique SauterJoseph Yamé — 2008

International Journal of Applied Mathematics and Computer Science

Networked Control Systems (NCSs) deal with feedback control systems with loops closed via data communication networks. Control over a network has many advantages compared with traditionally controlled systems, such as a lower implementation cost, reduced wiring, simpler installation and maintenance and higher reliability. Nevertheless, the networkinduced delay, packet dropout, asynchronous behavior and other specificities of networks will degrade the performance of closed-loop systems. In this context,...

Model-free reconfiguration mechanism for fault tolerance

Tushar JainJoseph J. YaméDominique Sauter — 2012

International Journal of Applied Mathematics and Computer Science

The problem of fault tolerant control is studied from the behavioral point of view. In this mathematical framework, the concept of interconnection among the variables describing the system is a key point. The problem is that the behavior we intend to control is not known. Therefore, we are interested in designing a fault accommodation scheme for an unknown behavior through an appropriate behavioral interconnection. Here we deal simply with the trajectories that are generated by the system in real...

A mixed active and passive GLR test for a fault tolerant control system

Hicham JamouliMohamed Amine El HailDominique Sauter — 2012

International Journal of Applied Mathematics and Computer Science

This paper presents an adaptive Generalized Likelihood Ratio (GLR) test for multiple Faults Detection and Isolation (FDI) in stochastic linear dynamic systems. Based on the work of Willsky and Jones (1976), we propose a modified generalized likelihood ratio test, allowing detection, isolation and estimation of multiple sequential faults. Our contribution aims to maximise the good decision rate of fault detection using another updating strategy. This is based on a reference model updated on-line...

Fault Tolerant Control design for polytopic LPV systems

Mickael RodriguesDidier TheilliolSamir AberkaneDominique Sauter — 2007

International Journal of Applied Mathematics and Computer Science

This paper deals with a Fault Tolerant Control (FTC) strategy for polytopic Linear Parameter Varying (LPV) systems. The main contribution consists in the design of a Static Output Feedback (SOF) dedicated to such systems in the presence of multiple actuator faults/failures. The controllers are synthesized through Linear Matrix Inequalities (LMIs) in both fault-free and faulty cases in order to preserve the system closed-loop stability. Hence, this paper provides a new sufficient (but not necessary)...

Fault diagnosis in a networked control system under communication constraints: a quadrotor application

Karim ChabirMohamed Amine SidDominique Sauter — 2014

International Journal of Applied Mathematics and Computer Science

This paper considers the problem of attitude sensor fault diagnosis in a quadrotor helicopter. The proposed approach is composed of two stages. The first one is the modelling of the system attitude dynamics taking into account the induced communication constraints. Then a robust fault detection and evaluation scheme is proposed using a post-filter designed under a particular design objective. This approach is compared with previous results based on the standard Kalman filter and gives better results...

Page 1

Download Results (CSV)