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This paper presents the modelling and control strategies based on PI and nonlinear sliding mode controllers of a hybrid fuel cell/supercapacitor source. It is composed of a Polymer Electrolyte Membrane Fuel Cell (PEMFC 500W) and a supercapacitor stack (800W) as a main and an auxiliary sources respectively, to supply the load requirements in the transient and steady states. A classical PI controller...
Presently, the photovoltaic (PV) and the wind energies are the most important energetic alternative resources. So far, a lot of researches are developed and conducted concerning the cost-optimally design and energy management for the stand-alone hybrid PV-wind generator (WG) systems. In this study, a methodology for optimal sizing design and strategy control based on differential flatness approach...
This paper presents a flatness control algorithm for a DC hybrid power sources used in Electric Vehicle (EV). The studied hybrid sources is composed by both electric sources, the first one is PEM fuel cell as the main sources, and the second one is supercapacitors pack considered as the auxiliary source. The load is connected directly in the DC link. The control algorithm is based on the flatness...
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