Integrated Hydrogen Utility Systems for Remote Northern Communities—Hydrogen Millennium, 17th Canadian Hydrogen Conference(May 28-31, 2000)Glenn D. Rambach, pp. 1-20. |
Hydrogen Production by a Windmill Powered Electrolyser, Germany, Menzi et al. pp. 757-765, (1998). |
Hybrid Energy Storage Systems for Stand-Alone Electric Power Systems: Optimization of System Performance and Cost through Control Strategies, International Journal of Hydrogen Energy 24 (1999) pp. 1139-1156. |
Phoebus-Jülich, An autonomous Energy Supply System Comprising Photovoltaics, Electrolytic Hydrogen, Fuel Cell, Barthels et al., Institute of Energy Process Engineering (IEV), Germany, pp. 1005-1015, (1996). |
Phoebue-Jülich: An Autonomous Energy Supply System comprising Photovoltaics, Electrolytic Hydrogen, Fuel Cell, Inst. J. Hydrogen Energy, vol. 23, N° 4, 1998, pp. 295-301, (1998). |
Examination of the Design of the Energy Management for the PV Plant, PHOEBUS Jülich by Dynamic Programming, Germany, Pötter et al., pp. 1185-1190, (1998). |
Investigation of Techno-Economical Performance of Using Hydrogen Storage with Integrated Renewable Energy Systems, Ibrahim et al., Mech. Eng. Dept., National Research Centre (NRC), Egypt, pp. 2055-2060, (1996). |
Evaluation of a 5 kW, Photovoltaic Hydrogen Production and Storage Installation for a Residential Home in Switzerland, Hullmuller et al., Centre d'Études des Problèmes de l'Énergie and Laboratoire de Cristallographie, Switzerland, pp. 423-443, (1992). |