A control system for reducing the hydrogen consumption of PEM fuel cells under parametric uncertainties

Journal Title: TecnoLógicas - Year 2016, Vol 19, Issue 37

Abstract

This paper presents a control system for reducing the hydrogen consumption for a Polymer Electrolyte Membrane fuel cell, also considering parametric uncertainties. The control system is based on a non-linear state space model of the fuel cell, a Kalman filter/estimator, a linear state feedback controller and a Maximum Power Point (MPP) tracking algorithm. The control objective is to supply the requested load power, avoiding oxygen starvation with minimum fuel consumption using a Perturb and Observe (P&O) algorithm. The performance of the control system was assessed under parametric uncertainties by simulating a performance degradation of the compressor due to aging. Thus, two cases were simulated: first, a mismatch between the system and the linear model in the (open-loop) air compressor gain; and second, a mismatch between the system and the linear model in the current compressor and losses. The simulation results showed that the Kalman filter/estimator overcome the uncertainties produced by the parametrical variations. Besides, the P&O algorithm accomplished to provide the suitable compressor voltage without identifying an optimal profile under ideal operating conditions and empirical data.

Authors and Affiliations

Richard Rios, Carlos A. Ramos-Paja, Jairo J. Espinosa

Keywords

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  • EP ID EP401789
  • DOI 10.22430/22565337.59
  • Views 113
  • Downloads 0

How To Cite

Richard Rios, Carlos A. Ramos-Paja, Jairo J. Espinosa (2016). A control system for reducing the hydrogen consumption of PEM fuel cells under parametric uncertainties. TecnoLógicas, 19(37), 45-59. https://europub.co.uk/articles/-A-401789