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NTIS 바로가기IEEE transactions on vehicular technology, v.56 no.4 pt.1, 2007년, pp.1516 - 1523
Lu, Shuai , Corzine, Keith A. , Ferdowsi, Mehdi
This paper proposes a new energy storage system (ESS) design, including both batteries and ultracapacitors (UCs) in hybrid electric vehicle (HEV) and electric vehicle applications. The conventional designs require a dc–dc converter to interface the UC unit. Herein, the UC can be directly swi...
Chan, C.C.. The state of the art of electric and hybrid vehicles. Proceedings of the IEEE, vol.90, no.2, 247-275.
Ehsani, M., Rahman, K.M., Toliyat, H.A.. Propulsion system design of electric and hybrid vehicles. IEEE transactions on industrial electronics : a publication of the IEEE Industrial Electronics Society, vol.44, no.1, 19-27.
Onoda, S., Emadi, A.. PSIM-based modeling of automotive power systems: conventional, electric, and hybrid electric vehicles. IEEE transactions on vehicular technology, vol.53, no.2, 390-400.
Zubieta, L., Bonert, R.. Characterization of double-layer capacitors for power electronics applications. IEEE transactions on industry applications, vol.36, no.1, 199-205.
Linzen, D., Buller, S., Karden, E., De Doncker, R.W.. Analysis and evaluation of charge-balancing circuits on performance, reliability, and lifetime of supercapacitor systems. IEEE transactions on industry applications, vol.41, no.5, 1135-1141.
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Epcos 2005 Datasheet-UltraCap Double Layer Capacitors 0
Tseng, K.C., Liang, T.J.. Novel high-efficiency step-up converter. IEE proceedings, Electric power applications, vol.151, no.2, 182-190.
Amrhein, M., Krein, P.T.. Dynamic simulation for analysis of hybrid electric vehicle system and subsystem interactions, including power electronics. IEEE transactions on vehicular technology, vol.54, no.3, 825-836.
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