Abstract. This research work is devoted to the development of an electrical and mathematical model able to simulate the static and transient phenomena in a small power polymer electrolyte membrane fuel cell (PEM) system. At present, there are different electrochemical models available to capture the steady state behavior by estimating the equilibrium voltage for a particular set of operating conditions. However, it is difficult to find models capable of describing transient phenomena. Dynamic models are very interesting from a practical point of view when the loads exhibit large variations. Some examples are powertrains of land-based vehicles or submarines. In that cases, the output power from the fuel cell shows large variations during acc...
The electrochemical processes that occur in a fuel cell are used in this paper to develop a comprehe...
A nonlinear circuit model of a polymer electrolyte membrane (PEM) fuel cell stack is presented. The ...
AbstractThis paper presents a dynamic mathematical model for Polymer Electrolyte Membrane “PEM” fuel...
This research work is devoted to the development of an electrical and mathematical model able to sim...
In the last decade, the interest in green power generators has increased. Hydrogen, especially, is a...
Fuel cell applications become increasingly attractive. Therefore, comprehensive models, simulation s...
This work presents a mathematical model of a system powered by a commercial fuel cell. The model was...
Fuel cell applications have become increasingly attractive. Therefore, comprehensive models, simulat...
The goal of this study is to develop a system-level dynamic model of a proton-exchange membrane (PEM...
A nonlinear circuit model of a polymer electrolyte membrane (PEM) fuel cell stack is presented. The ...
Abstract—This paper presents a dynamic electrochemical model for representation, simulation, and eva...
A nonlinear circuit model of a polymer electrolyte membrane (PEM) fuel cell stack is presented. The ...
In this paper, a mathematical model is developed to simulate the transient phenomena in a polymer ...
This paper presents a dynamic mathematical model for Polymer Electrolyte Membrane “PEM” fuel cell sy...
The ever increasing demand for electrical energy and the rise in the electricity prices due to the r...
The electrochemical processes that occur in a fuel cell are used in this paper to develop a comprehe...
A nonlinear circuit model of a polymer electrolyte membrane (PEM) fuel cell stack is presented. The ...
AbstractThis paper presents a dynamic mathematical model for Polymer Electrolyte Membrane “PEM” fuel...
This research work is devoted to the development of an electrical and mathematical model able to sim...
In the last decade, the interest in green power generators has increased. Hydrogen, especially, is a...
Fuel cell applications become increasingly attractive. Therefore, comprehensive models, simulation s...
This work presents a mathematical model of a system powered by a commercial fuel cell. The model was...
Fuel cell applications have become increasingly attractive. Therefore, comprehensive models, simulat...
The goal of this study is to develop a system-level dynamic model of a proton-exchange membrane (PEM...
A nonlinear circuit model of a polymer electrolyte membrane (PEM) fuel cell stack is presented. The ...
Abstract—This paper presents a dynamic electrochemical model for representation, simulation, and eva...
A nonlinear circuit model of a polymer electrolyte membrane (PEM) fuel cell stack is presented. The ...
In this paper, a mathematical model is developed to simulate the transient phenomena in a polymer ...
This paper presents a dynamic mathematical model for Polymer Electrolyte Membrane “PEM” fuel cell sy...
The ever increasing demand for electrical energy and the rise in the electricity prices due to the r...
The electrochemical processes that occur in a fuel cell are used in this paper to develop a comprehe...
A nonlinear circuit model of a polymer electrolyte membrane (PEM) fuel cell stack is presented. The ...
AbstractThis paper presents a dynamic mathematical model for Polymer Electrolyte Membrane “PEM” fuel...