Title :
A Neural Inverse Control of a PEM-FC System by the Generalized Mapping Regressor (GMR)
Author :
Marsala, G. ; Bouquin, D. ; Pukrushpan, J.T. ; Pucci, M. ; Cirrincione, G. ; Vitale, G. ; Miraoui, A.
Author_Institution :
Univ. de Technol. de Belfort-Montbeliard (UTBM), Belfort
Abstract :
This paper deals with the air management subsystem in fuel cell systems (FCS). It proposes to use a feedforward control action for improving a classical PI control of the FCS for preventing oxygen starvation by using the control scheme suggested by Kawato. This paper therefore, proposes the application of a recent neural network scheme, the GMR (Generalized Mapping Regressor Mapping) to implement a static feedforward controller, which is obtained with the inversion of the FCS model. The idea, for the air management subsystem, is to use a feedforward for optimising a classical PI control of the FCS for preventing oxygen starvation. This control system has been implemented both in numerical simulation and experimentally adopting a properly devised FCS in which the FC stack is realized by a buck-converter (emulator), that is by using a hardware-in-the-loop experimental rig.
Keywords :
PI control; proton exchange membrane fuel cells; Kawato; PEM-FC; air management subsystem; buck-converter; classical PI control; feedforward control action; fuel cell systems; generalized mapping regressor; neural inverse control; neural network scheme; numerical simulation; static feedforward controller; Biomembranes; Control systems; Costs; Fuel cells; Hardware; Hydrogen; Personal communication networks; Pi control; Power system management; Protons;
Conference_Titel :
Industry Applications Society Annual Meeting, 2008. IAS '08. IEEE
Conference_Location :
Edmonton, Alta.
Print_ISBN :
978-1-4244-2278-4
Electronic_ISBN :
0197-2618
DOI :
10.1109/08IAS.2008.154