Libros sobre el tema "Energy management strategies for hybrid electric vehicles"

Siga este enlace para ver otros tipos de publicaciones sobre el tema: Energy management strategies for hybrid electric vehicles.

Crea una cita precisa en los estilos APA, MLA, Chicago, Harvard y otros

Elija tipo de fuente:

Consulte los 25 mejores mejores libros para su investigación sobre el tema "Energy management strategies for hybrid electric vehicles".

Junto a cada fuente en la lista de referencias hay un botón "Agregar a la bibliografía". Pulsa este botón, y generaremos automáticamente la referencia bibliográfica para la obra elegida en el estilo de cita que necesites: APA, MLA, Harvard, Vancouver, Chicago, etc.

También puede descargar el texto completo de la publicación académica en formato pdf y leer en línea su resumen siempre que esté disponible en los metadatos.

Explore libros sobre una amplia variedad de disciplinas y organice su bibliografía correctamente.

1

Williamson, Sheldon S. Energy Management Strategies for Electric and Plug-in Hybrid Electric Vehicles. New York, NY: Springer New York, 2013. http://dx.doi.org/10.1007/978-1-4614-7711-2.

Texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
2

Engineers, Society of Automotive y Future Transportation Technology Conference and Exposition (1997 : San Diego, Calif.), eds. Electric/hybrid vehicles: Alternative powerplants, energy management, and battery technology. Warrendale, PA: Society of Automotive Engineers, 1997.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
3

Li, Yuecheng y Hongwen He. Deep Reinforcement Learning-Based Energy Management for Hybrid Electric Vehicles. Cham: Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-031-79206-9.

Texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
4

Rizzoni, Giorgio, Simona Onori y Lorenzo Serrao. Hybrid Electric Vehicles: Energy Management Strategies. Springer London, Limited, 2015.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
5

Rizzoni, Giorgio, Simona Onori y Lorenzo Serrao. Hybrid Electric Vehicles: Energy Management Strategies. Springer, 2015.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
6

Williamson, Sheldon S. Energy Management Strategies for Electric and Plug-in Hybrid Electric Vehicles. Springer, 2013.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
7

Williamson, Sheldon S. Energy Management Strategies for Electric and Plug-in Hybrid Electric Vehicles. Springer, 2013.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
8

Williamson, Sheldon S. Energy Management Strategies for Electric and Plug-in Hybrid Electric Vehicles. SPRINGER, 2020.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
9

Williamson, Sheldon S. Energy Management Strategies for Electric and Plug-In Hybrid Electric Vehicles. Springer London, Limited, 2013.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
10

Williamson, Sheldon S. S. Energy Management Strategies for Electric and Plug-in Hybrid Electric Vehicles. Springer, 2016.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
11

Panigrahi, Siba Prasada. Energy Management in Hybrid Electric Vehicles. Elsevier Science & Technology Books, 2016.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
12

Bridges, Hilda. Hybrid Vehicles and Hybrid Electric Vehicles: New Developments, Energy Management and Emerging Technologies. Nova Science Publishers, Incorporated, 2015.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
13

Energy Systems for Electric and Hybrid Vehicles. Institution of Engineering & Technology, 2016.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
14

Innovative Antriebe 2018. VDI Verlag, 2018. http://dx.doi.org/10.51202/9783181023341.

Texto completo
Resumen
Zukünftiges Mobilitätsverhalten Mobilität 2050 – Selfdriving-eCo-Hyperflyyer, Drahtesel, oder was? . . . . . . . . . . . . . . . . . . .1 K. C. Keller, Aveniture GmbH, Freinsheim Ökobilanzierung Einfluss von Zellbauform und Zellchemie auf die Ökobilanz von batterieelektrischen Fahrzeugen . . . . . . . . . .5 T. Semper, M. Clauß, IAV GmbH, Stollberg; A. Forell, IAV GmbH, Bad Cannstatt Anwendungsfallabhängige CO2 -Bilanzen elektrifizierter Fahrzeugantriebe –Use case driven CO2 footprint of electrified powertrains . . . . . . . . . . . . . . .17 O. Ludwig, J. Muth, M. Gernuks, H. Schröder, T. Löscheter Horst, Volkswagen AG, Wolfsburg Prädiktion der Lebensdauer von Traktionsbatteriesystemen für reale Nutzungsszenarien . . . .33 M. Ufert, Professur für Fahrzeugmechatronik, Technische Universität Dresden; A. Batzdorf, L. Morawietz, IAM GmbH, Dresden Predictive Energy Management Strategies for Hybrid Electric Vehicles: eHorizon for Battery Management System. . . . . 49 M. ...
Los estilos APA, Harvard, Vancouver, ISO, etc.
15

Engineers, Society of Automotive. Electric Hybrid Vehicles: Alternative Powerplants, Energy Management, and Battery Technology. SAE International, 1997.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
16

Teng, Liu y Amir Khajepour. Reinforcement Learning-Enabled Intelligent Energy Management for Hybrid Electric Vehicles. Morgan & Claypool Publishers, 2019.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
17

He, Hongwen y Li Yeuching. Deep Reinforcement Learning-Based Energy Management for Hybrid Electric Vehicles. Morgan & Claypool Publishers, 2022.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
18

Teng, Liu. Reinforcement Learning-Enabled Intelligent Energy Management for Hybrid Electric Vehicles. Springer International Publishing AG, 2019.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
19

Li, Yeuching y Hongwen He. Deep Reinforcement Learning-Based Energy Management for Hybrid Electric Vehicles. Morgan & Claypool Publishers, 2022.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
20

Yeuching, Li y He Hongwen. Deep Reinforcement Learning-Based Energy Management for Hybrid Electric Vehicles. Springer International Publishing AG, 2022.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
21

Teng, Liu y Amir Khajepour. Reinforcement Learning-Enabled Intelligent Energy Management for Hybrid Electric Vehicles. Morgan & Claypool Publishers, 2019.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
22

Li, Yeuching y Hongwen He. Deep Reinforcement Learning-Based Energy Management for Hybrid Electric Vehicles. Morgan & Claypool Publishers, 2022.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
23

Teng, Liu y Amir Khajepour. Reinforcement Learning-Enabled Intelligent Energy Management for Hybrid Electric Vehicles. Morgan & Claypool Publishers, 2019.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
24

SIMVEC – Simulation und Erprobung in der Fahrzeugentwicklung. VDI Verlag, 2018. http://dx.doi.org/10.51202/9783181023334.

Texto completo
Resumen
Inhalt Zukünftiges Mobilitätsverhalten Mobilität 2050 – Selfdriving-eCo-Hyperflyyer, Drahtesel, oder was? . . . . . . . . . . . . . . . . . . .1 K. C. Keller, Aveniture GmbH, Freinsheim Ökobilanzierung Einfluss von Zellbauform und Zellchemie auf die Ökobilanz von batterieelektrischen Fahrzeugen . . . . . . .5 T. Semper, M. Clauß, IAV GmbH, Stollberg; A. Forell, IAV GmbH, Bad Cannstatt Anwendungsfallabhängige CO2 -Bilanzen elektrifizierter Fahrzeugantriebe – Use case driven CO2 footprint of electrified powertrains . . . . . . . . . . . . . . . . . . . . . . . . . . 17 O. Ludwig, J. Muth, M. Gernuks, H. Schröder, T. Löscheter Horst, Volkswagen AG, Wolfsburg Prädiktion der Lebensdauer von Traktionsbatteriesystemen für reale Nutzungsszenarien . . . .33 M. Ufert, Professur für Fahrzeugmechatronik, Technische Universität Dresden; A. Batzdorf, L. Morawietz, IAM GmbH, Dresden Predictive Energy Management Strategies for Hybrid Electric Vehicles: eHorizon for Battery Manage...
Los estilos APA, Harvard, Vancouver, ISO, etc.
25

Sarkar, B. K. y Reena Singh. Hydrogen Fuel Cell Vehicles Current Status. Namya Press, 2022. http://dx.doi.org/10.56962/9789355451118.

Texto completo
Resumen
Abstract: The hazardous effects of pollutants from conventional fuel vehicles have caused the scientific world to move towards environmentally friendly energy sources. Though we have various renewable energy sources, the perfect one to use as an energy source for vehicles is hydrogen. Like electricity, hydrogen is an energy carrier that has the ability to deliver incredible amounts of energy. On-board hydrogen storage in vehicles is an important factor that should be considered when designing fuel cell vehicles. In this study, a recent development in hydrogen fuel cell engines is reviewed to scrutinize the feasibility of using hydrogen as a major fuel in transportation systems. A fuel cell is an electrochemical device that can produce electricity by allowing chemical gases and oxidants as reactants. With anodes and electrolytes, the fuel cell splits the cation and the anion in the reactant to produce electricity. Fuel cells use reactants, which are not harmful to the environment and produce water as a product of the chemical reaction. As hydrogen is one of the most efficient energy carriers, the fuel cell can produce direct current (DC) power to run the electric car. By integrating a hydrogen fuel cell with batteries and the control system with strategies, one can produce a sustainable hybrid car.
Los estilos APA, Harvard, Vancouver, ISO, etc.
Ofrecemos descuentos en todos los planes premium para autores cuyas obras están incluidas en selecciones literarias temáticas. ¡Contáctenos para obtener un código promocional único!

Pasar a la bibliografía