Fault diagnosis in a networked control system under communication constraints: A quadrotor application
Karim Chabir, Mohamed Amine Sid, Dominique Sauter (2014)
International Journal of Applied Mathematics and Computer Science
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Karim Chabir, Mohamed Amine Sid, Dominique Sauter (2014)
International Journal of Applied Mathematics and Computer Science
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Christophe Aubrun, Dominique Sauter, Joseph Yamé (2008)
International Journal of Applied Mathematics and Computer Science
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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....
Saúl Montes de Oca, Vicenç Puig, Marcin Witczak, Łukasz Dziekan (2012)
International Journal of Applied Mathematics and Computer Science
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In this paper, a Fault Tolerant Control (FTC) strategy for Linear Parameter Varying (LPV) systems that can be used in the case of actuator faults is proposed. The idea of this FTC method is to adapt the faulty plant instead of adapting the controller to the faulty plant. This approach can be seen as a kind of virtual actuator. An integrated FTC design procedure for the fault identification and fault-tolerant control schemes using LPV techniques is provided as well. Fault identification...
Chao Sun, Fuli Wang, Xiqin He (2016)
Open Mathematics
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This paper addresses the problem of robust fault-tolerant control design scheme for a class of Takagi-Sugeno fuzzy systems subject to interval time-varying delay and external disturbances. First, by using improved delay partitioning approach, a novel n-steps iterative learning fault estimation observer under H ∞ constraint is constructed to achieve estimation of actuator fault. Then, based on the online estimation information, a fuzzy dynamic output feedback fault-tolerant controller...
Benosman, Mouhacine (2010)
Mathematical Problems in Engineering
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Péter Gáspár, Zoltán Szabó, József Bokor (2012)
International Journal of Applied Mathematics and Computer Science
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The aim of the paper is to present a supervisory decentralized architecture for the design and development of reconfigurable and fault-tolerant control systems in road vehicles. The performance specifications are guaranteed by local controllers, while the coordination of these components is provided by a supervisor. Since the monitoring components and FDI filters provide the supervisor with information about the various vehicle maneuvers and the different fault operations, it is able...
Didier Theilliol, Cédric Join, Youmin Zhang (2008)
International Journal of Applied Mathematics and Computer Science
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The prospective work reported in this paper explores a new approach to enhance the performance of an active fault tolerant control system. The proposed technique is based on a modified recovery/trajectory control system in which a reconfigurable reference input is considered when performance degradation occurs in the system due to faults in actuator dynamics. An added value of this work is to reduce the energy spent to achieve the desired closed-loop performance. This work is justified...
Abdel-Razzak Merheb, Hassan Noura, François Bateman (2015)
International Journal of Applied Mathematics and Computer Science
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In this paper, sliding mode control is used to develop two passive fault tolerant controllers for an AscTec Pelican UAV quadrotor. In the first approach, a regular sliding mode controller (SMC) augmented with an integrator uses the robustness property of variable structure control to tolerate partial actuator faults. The second approach is a cascaded sliding mode controller with an inner and outer SMC loops. In this configuration, faults are tolerated in the fast inner loop controlling...
Tushar Jain, Joseph J. Yamé, Dominique Sauter (2012)
International Journal of Applied Mathematics and Computer Science
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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...
Hao Yang, Bin Jiang, Vincent Cocquempot, Lingli Lu (2012)
International Journal of Applied Mathematics and Computer Science
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This paper focuses on supervisory fault tolerant control design for a class of systems with faults ranging over a finite cover. The proposed framework is based on a switched system approach, and relies on a supervisory switching within a family of pre-computed candidate controllers without individual fault detection and isolation schemes. Each fault set can be accommodated either by one candidate controller or by a set of controllers under an appropriate switching law. Two aircraft examples...