DocumentCode :
3577530
Title :
Fault tolerant control design based higher-order sliding mode control for Internal Combustion engine
Author :
Bada, N´doye ; Ali, Sonane Ahmed ; Langlois, Nicolas
Author_Institution :
IRSEEM Technopole du Madrillet, St. Etienne du Rouvray, France
fYear :
2014
Firstpage :
1
Lastpage :
6
Abstract :
In this paper we present a passive fault tolerant control strategy for the Internal Combustion air path. This strategy is carried out under the concept of Higher Order Sliding Mode Control (HOSMC). The proposed fault tolerant strategy incorporates a Super-Twisting controller which handles parametric uncertainties and actuator failures. In this paper we consider two types of actuator failures, additive and loss-of-effectiveness faults., theoretical results on the convergence of the proposed controller based on the Lyapunov theory are derived. The simulations of the proposed controller on a recently validated experimental air path internal combustion model, show good results for actuator failures conditions even in the presence of uncertainties on model parameters.
Keywords :
actuators; fault tolerant control; internal combustion engines; variable structure systems; HOSMC; Lyapunov theory; actuator failures conditions; air path internal combustion model; fault tolerant control design; higher order sliding mode control; internal combustion air path; internal combustion engine; parametric uncertainties; passive fault tolerant control strategy; super-twisting controller; Actuators; Additives; Atmospheric modeling; Fault tolerance; Fault tolerant systems; Ice; Uncertainty; Internal Combustion Engine (ICE); Nonlinear control; Passive Fault-Tolerant Control (PFTC); Sliding- Mode Control (SMC); Super-Twisting Algorithm (STA);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Environmental Friendly Energies and Applications (EFEA), 2014 3rd International Symposium on
Type :
conf
DOI :
10.1109/EFEA.2014.7059949
Filename :
7059949
Link To Document :
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