Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Alberto Martin-Lozano"'
Autor:
Carmen Raga, Andres Barrado, Antonio Lazaro, Alberto Martin-Lozano, Isabel Quesada, Pablo Zumel
Publikováno v:
Energies, Vol 11, Iss 11, p 3060 (2018)
The design of the optimal power distribution system (PDS or powertrain) for fuel cell-based vehicles is a complex task due to PDS comprising one or more power converters, several types of secondary energy sources, a fuel cell, several control loops,
Externí odkaz:
https://doaj.org/article/06a8e2914a414d8a845f040757903ec5
Autor:
Carmen Raga, Andres Barrado, Henry Miniguano, Antonio Lazaro, Isabel Quesada, Alberto Martin-Lozano
Publikováno v:
Energies, Vol 11, Iss 10, p 2597 (2018)
The fuel cell based vehicles powertrain is an extensive system that comprises a fuel cell (FC) as the primary energy source, a set of power converters both unidirectional and bidirectional and batteries or supercapacitors as secondary energy sources.
Externí odkaz:
https://doaj.org/article/1e8b139d87154ba9b0b808b0c4dfd7d0
Publikováno v:
2020 IEEE 14th International Conference on Compatibility, Power Electronics and Power Engineering (CPE-POWERENG).
Fuel cell hybrid vehicles are a viable alternative to traditional internal combustion vehicles. In order to improve its driving range, this research provides an energy management strategy for the power distribution system of hybrid electric vehicles.
Autor:
Andres Barrado, Alba Rodriguez-Lorente, Cristina Fernández, Antonio Lazaro, Alberto Martin-Lozano
Publikováno v:
2020 IEEE 14th International Conference on Compatibility, Power Electronics and Power Engineering (CPE-POWERENG).
A viable alternative to internal combustion vehicles is the fuel cell hybrid vehicle. This research provides an energy management optimization algorithm for the power distribution system of fuel cell hybrid vehicles oriented to increase its driving r
Publikováno v:
Energies
Volume 12
Issue 21
Energies, Vol 12, Iss 21, p 4082 (2019)
Volume 12
Issue 21
Energies, Vol 12, Iss 21, p 4082 (2019)
This paper develops step-by-step a complete electric model of a light hybrid electric vehicle propulsion system. This model includes the vehicle mass, the radius and mass of the wheels, the aerodynamic profile of the vehicle, the electric motor and t
Publikováno v:
Energies; Volume 11; Issue 11; Pages: 3060
Energies, Vol 11, Iss 11, p 3060 (2018)
e-Archivo. Repositorio Institucional de la Universidad Carlos III de Madrid
instname
Energies, Vol 11, Iss 11, p 3060 (2018)
e-Archivo. Repositorio Institucional de la Universidad Carlos III de Madrid
instname
The design of the optimal power distribution system (PDS or powertrain) for fuel cell-based vehicles is a complex task due to PDS comprising one or more power converters, several types of secondary energy sources, a fuel cell, several control loops,
Publikováno v:
e-Archivo. Repositorio Institucional de la Universidad Carlos III de Madrid
instname
Energies; Volume 11; Issue 10; Pages: 2597
Energies, Vol 11, Iss 10, p 2597 (2018)
instname
Energies; Volume 11; Issue 10; Pages: 2597
Energies, Vol 11, Iss 10, p 2597 (2018)
The fuel cell based vehicles powertrain is an extensive system that comprises a fuel cell (FC) as the primary energy source, a set of power converters both unidirectional and bidirectional and batteries or supercapacitors as secondary energy sources.
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::c0f52cdfa41808dba1b059f4fb2d97e9
https://hdl.handle.net/10016/28125
https://hdl.handle.net/10016/28125
Publikováno v:
Energies, Vol 12, Iss 21, p 4082 (2019)
This paper develops step-by-step a complete electric model of a light hybrid electric vehicle propulsion system. This model includes the vehicle mass, the radius and mass of the wheels, the aerodynamic profile of the vehicle, the electric motor and t
Externí odkaz:
https://doaj.org/article/0989e7677448423a92f4d54f0bec1982