Instytut Elektrotechniki Oddział Technologii i Materiałoznawstwa Elektrotechnicznego we Wrocławiu
References
1. Weigl J., Saidi H., Pios hydrogen fuel cell tricycle, Int. J. Hydrogen Energy, Vol. 30 (2005), pp. 1035-1036
2. In brief, Autostudi rolls out fuel cell scooter, Fuel Cells Bull., Vol. 2007 (4), p. 11
3. Novo E., Baldini L., Borello L., Cherchi P., Gianolio G., Valtuegna N., Development of fuel cell hybrid scooter equiped with an integrated metal hydride tank, 1st World Congress of Young Scientists on Hydrogen Energy Systems HYSYDAYS, ISBN: 1-56700-230-7, 2006, pp. 405-407
4. Hwang J.J., Wang D.Y., Shih N.C., Development of a lightweight fuel cell vehicle, J. Power Sources, Vol. 141 (2005), pp. 108-115
5. Hwang J.J., Wang D.Y., Shih N.C., Lai D.Y., Chen C.K., Development of fuel-cell-powered electric bicycle, J. Power Sources, Vol. 133 (2004), pp. 223-228
6. Cardinali L., Santomassimo S., Stefanoni M., Design and realization of 300 W fuel cell generator on an electric bicycle, J. Power Sources, Vol. 106 (2002), pp.384-387
7. Jossen A., Garche J., Doering H., Goetz M., Knaupp W., Joerissen L., Hybrid systems with lead-acid battery and proton-exchange membrane fuel cell, J. Power Sources, Vol. 144 (2005), pp. 395-401
8. Thounthong P., Rael S., Davat B., Control strategy of fuel cell/supercapacitors hybrid power sources for electric vehicle, J. Power Sources, Vol.158 (2006), pp. 806-814
9. Rodatz P., Paganelli G., Sciarretta A., Guzzella L., Optimal power management of an experimental fuel cell/supercapacitor-powered hybrid vehicle, Control Eng. Pract., Vol. 13 (2005) 41–53
10. Bujlo P., Pasciak G., Chmielowiec J., Test stand for fuel cell investigations, Sci. Pap. Inst. Electr. Eng. Fundam., Vol. 42 No.16 (2005), pp. 21-26.