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DEVELOPMENT OF THE CONTROL MODULE OF AN AIR COOLED PEM FUEL CELL

DEVELOPMENT OF THE CONTROL MODULE OF AN AIR COOLED PEM FUEL CELL

Rezende, Ian José Dias ; Santana, Leonardo Oliveira Santos de ; Niekraszewicz, Guilherme Santos ; Sampaio, Gabriel Aspera ; Ett, Gerhard ;

Full Article:

"With the increase in decarbonization initiatives around the world, newmethods have emerged for using alternative sources to power vehicles, one of whichis hydrogen. However, when new technologies are introduced, they also bring newmethods of control and operation. This paper aims to develop a printed circuit boardto integrate an air-cooled PEM fuel cell into the electrical system of a Formula SAEvehicle. By separating the activities into the collection of control variables, controlledvariables and the study of the cell's operation, it was possible to develop theelectronic schematic and the 2D and 3D models of the board, demonstrating thatelectronic projects can be carried out using a well-planned sequence of tasks."

Full Article:

"With the increase in decarbonization initiatives around the world, newmethods have emerged for using alternative sources to power vehicles, one of whichis hydrogen. However, when new technologies are introduced, they also bring newmethods of control and operation. This paper aims to develop a printed circuit boardto integrate an air-cooled PEM fuel cell into the electrical system of a Formula SAEvehicle. By separating the activities into the collection of control variables, controlledvariables and the study of the cell's operation, it was possible to develop theelectronic schematic and the 2D and 3D models of the board, demonstrating thatelectronic projects can be carried out using a well-planned sequence of tasks."

Palavras-chave: Hydrogen; PEM fuel cell; Printed circuit board,

Palavras-chave: Hydrogen; PEM fuel cell; Printed circuit board,

DOI: 10.5151/siintec2024-393337

Referências bibliográficas
  • [1] "1 ARAÚJO, E.; SILVA, M.; RIBEIRO, R. (Eds.). SUSTENTABILIDADE E
  • [2] DESCARBONIZAÇÃO: DESAFIOS PRÁTICOS. Braga: CECS, 2020.
  • [3] 2 SANTOS, Fernando Miguel Soares Mamede Dos; SANTOS, Fernando Antônio
  • [4] Castilho Mamede dos. O COMBUSTÍVEL “HIDROGÊNIO”. Instituto Superior
  • [5] Politécnico de Viseu. Portugal.
  • [6] 3 Halder, P., Babaie, M., Salek, F., Shah, K., Stevanovic, S., Bodisco, T. A., & Zare, A.
  • [7] (2024). Performance, emissions and economic analyses of hydrogen fuel cell
  • [8] vehicles. Renewable and Sustainable Energy Reviews, 199, 114543.
  • [9] 4 Fragiacomo, P., Genovese, M., Piraino, F., Corigliano, O., & De Lorenzo, G. (2022).
  • [10] Hydrogen-fuel cell hybrid powertrain: conceptual layouts and current
  • [11] applications. Machines, 10(12), 1121.
  • [12] 5 Mark I. Montrose, ""Printed Circuit Board Basics,"" in Printed Circuit Board
  • [13] Design Techniques for EMC Compliance: A Handbook for Designers, IEEE,
  • [14] 2000.
  • [15] 6 SAE Brasil. (2020). HYBRID H2 POWERTRAIN Specs and Safety Rules - Draft 4.
  • [16] Available in: http://portal.saebrasil.org.br/. Accessed in: 12/08/2024.
  • [17] 7Ballard Power Systems, Control-Software Design-Guide, 2012."
Como citar:

Rezende, Ian José Dias; Santana, Leonardo Oliveira Santos de; Niekraszewicz, Guilherme Santos; Sampaio, Gabriel Aspera; Ett, Gerhard; "DEVELOPMENT OF THE CONTROL MODULE OF AN AIR COOLED PEM FUEL CELL", p. 968-975 . In: . São Paulo: Blucher, 2024.
ISSN 2357-7592, DOI 10.5151/siintec2024-393337

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