Title :
Robust passive fault tolerant control applied to a Fuel Metering Valve of a jet engine
Author :
Souami, Yani ; Mechbal, Nazih ; Ecoutin, Stephane
Author_Institution :
Process & Eng. in Mech. & Mater. Lab., Arts et Metiers ParisTech, Paris, France
Abstract :
In this paper, we propose to monitor the Fuel Metering Valve (FMV) of a jet engine, subsystem controlling the fuel flow. The proposed control strategy aims to design a virtual sensor based on robust on-line estimation for LPV systems using Takagi-Sugeno formalism. The purpose of the original approach is to provide performances required in the specifications in spite of occurrence of an unexpected fault during the operation. The robustness is guaranteed by a Neural Kalman Filter accommodating, in real time, the model prediction. In the proposed methodology, an off-line closed-loop identification scheme is first used to elaborate multi local linear state space models, after that a multi-model observer based on Linear Matrix Inequalities (LMI) optimization is used to build the virtual sensor. The NEKF is added to circumvent online model accuracy problems. The efficiency and limit of the approach are shown and discussed through simulations on a complete numerical engine test bench.
Keywords :
Kalman filters; closed loop systems; fault tolerant control; jet engines; linear matrix inequalities; observers; optimisation; robust control; FMV; LMI optimization; LPV system; NEKF; Takagi-Sugeno formalism; circumvent online model; fuel flow control; fuel metering valve; jet engine; linear matrix inequality optimization; multilocal linear state space model; multimodel observer; neural Kalman Filter; numerical engine test bench; off-line closed-loop identification scheme; robust on-line estimation; robust passive fault tolerant control; virtual sensor; Aerospace electronics; Bismuth; Magnetic cores; Robustness;
Conference_Titel :
Aerospace Conference, 2015 IEEE
Conference_Location :
Big Sky, MT
Print_ISBN :
978-1-4799-5379-0
DOI :
10.1109/AERO.2015.7119088