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[58] Thielmann A, Sauer A, Isenmann R, et al. Produkt-roadmap lithium-ionen-batterien 2030. Report. Fraunhofer ISI, Germany; February 2012 [59] Waag W, Fleischer C, Sauer DU. Critical review of the methods for monitoring of lithium- ion batteries in electric and hybrid vehicles. Journal of Power Sources.2014;258:321-339 [60] Su X, Wu Q, Li J, et al. Silicon-based nanomaterials for lithium-ion batteries: A review. Advanced Energy Materials. 2014;4:1-23 [61] Cherry J. Battery durability in electrified vehicle applications: A review of degradation mechanisms and durability testing. FEV North America Report; 2016 [62] Mousazadeh H, Keyhani A, Javadi A, Mobli H, Abrinia K, Sharifi A. Evaluation of alterna- tive battery technologies for a solar assist plug-in hybrid electric tractor. Transportation Research Part D.2010;15:507-512 [63] Kucinskis G, Bajars G, Kleperis J. Graphene in lithium ion battery cathode materials: A review. Journal of Power Sources. 2013;240:66-79 [64] Snook GA, Kao P, Best AS. Conducting-polymerbased supercapacitor devices and elec- trodes. Journal of Power Sources. 2011;196:1-12 [65] Zhang K, Zhang LL, Zhao XS, et al. Graphene/polyaniline nanofiber composites as supercapacitor electrodes. Chemistry of Materials. 2010;22:1392-1401 [66] De Souza VHR, Oliveira MM, Zarbin AJG. Thin and flexible all-solid supercapacitor prepared from novel single wall carbon nanotubes/polyaniline thin films obtained in liquid–liquid interfaces. Journal of Power Sources. 2014;260:34-42 [67] Peng C, Zhang S, Jewell D, et al. Carbon nanotube and conducting polymer composites for supercapacitors. Progress in Natural Science.2008;18:777-788 [68] Van de Ven JD. Constant pressure hydraulic energy storage through a variable area pis- ton hydraulic accumulator. Applied Energy. 2013;105:262-270 [69] Liang X, Virvalo T. An energy recovery system for a hydraulic crane. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science.2001;215:737-744 [70] Ho TH, Ahn K. Design and control of a closed-loop hydraulic energy-regenerative sys- tem. Automation in Construction. 2012;22:444-458 [71] Wang T, Wang Q. An energy-saving pressure-compensated hydraulic system with elec- trical approach. IEEE/ASME Transactions on Mechatronics. 2014;19:570-578 [72] Wang T, Wang Q, Lin T. Improvement of boom control performance for hybrid hydraulic excavator with potential energy recovery. Automation in Construction. 2013;30:161-169 [73] Ho TH, Ahn KK. Modeling and simulation of hydrostatic transmission system with energy regeneration using hydraulic accumulator. Journal of Mechanical Science and Technology. 2010;24:1163-1175 Hybrid Electric Vehicles28
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Hybrid Electric Vehicles
Titel
Hybrid Electric Vehicles
Autor
Teresa Donateo
Herausgeber
InTech
Ort
Rijeka
Datum
2017
Sprache
englisch
Lizenz
CC BY 4.0
ISBN
978-953-51-3298-1
Abmessungen
15.5 x 22.5 cm
Seiten
162
Schlagwörter
Physical Sciences, Engineering and Technology, Engineering, Vehicle Engineering, Automobile Engineering
Kategorie
Technik
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