Modelling and optimisation of a hydrogen-based energy storage system in an autonomous electrical network
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[1] Ø. Ulleberg. Modeling of advanced alkaline electrolyzers: a system simulation approach , 2003 .
[2] P. M. Diéguez,et al. Thermal performance of a commercial alkaline water electrolyzer: Experimental study and mathematical modeling , 2008 .
[3] Ø. Ulleberg,et al. TRNSYS simulation models for solar-hydrogen systems , 1997 .
[4] B. Laoun,et al. Thermodynamics aspect of high pressure hydrogen production by water electrolysis , 2007 .
[5] M. Gambini. Metal hydride energy systems performance evaluation. Part A: Dynamic analysis model of heat and mass transfer , 1994 .
[6] S. V. Grigoriev,et al. Chapter 2 – Water Electrolysis Technologies , 2013 .
[7] M. Péra,et al. Multiphysics simulation of a PEM electrolyser: Energetic Macroscopic Representation approach , 2011 .
[8] Jingke Mo,et al. Electrochemical performance modeling of a proton exchange membrane electrolyzer cell for hydrogen energy , 2015 .
[9] F. A. Farret,et al. Mathematical and experimental basis to model energy storage systems composed of electrolyzer, metal hydrides and fuel cells , 2017 .
[10] Eamon McKeogh,et al. Simulation and operational assessment for a small autonomous wind–hydrogen energy system , 2006 .
[11] Yang Zhang,et al. Comparative study of hydrogen storage and battery storage in grid connected photovoltaic system: Storage sizing and rule-based operation☆ , 2017 .
[12] M. Gambini,et al. Numerical analysis and performance assessment of metal hydride-based hydrogen storage systems , 2008 .
[13] Paolo Tartarini,et al. Wind-hydrogen energy stand-alone system with carbon storage: Modeling and simulation , 2010 .
[14] M. Santarelli,et al. Theoretical model and experimental analysis of a high pressure PEM water electrolyser for hydrogen production , 2009 .
[15] John K. Kaldellis,et al. The role of hydrogen-based energy storage in the support of large-scale wind energy integration in island grids , 2015 .
[16] John K. Kaldellis,et al. Optimum energy storage techniques for the improvement of renewable energy sources-based electricity generation economic efficiency , 2007 .
[17] Belkacem Ould Bouamama,et al. Modelling, simulation and analysis of a PEM electrolysis system , 2016 .
[18] John K. Kaldellis,et al. Integrated electrification solution for autonomous electrical networks on the basis of RES and energy storage configurations , 2008 .
[19] Arash Khalilnejad,et al. A hybrid wind-PV system performance investigation for the purpose of maximum hydrogen production and storage using advanced alkaline electrolyzer , 2014 .
[20] M. Melaina,et al. Economic Assessment of Hydrogen Technologies Participating in California Electricity Markets , 2016 .
[21] F. Barbir. PEM electrolysis for production of hydrogen from renewable energy sources , 2005 .
[22] Chunto Tso,et al. Hydrogen Scooter Testing and Verification Program , 2012 .
[23] H. Gorgun. Dynamic modelling of a proton exchange membrane (PEM) electrolyzer , 2006 .
[24] A. Schroeder. Modeling storage and demand management in power distribution grids , 2011 .
[25] M. J. Khan,et al. ANALYSIS OF A SMALL WIND-HYDROGEN STAND-ALONE HYBRID ENERGY SYSTEM , 2009 .
[26] D. Stolten,et al. A comprehensive review on PEM water electrolysis , 2013 .
[27] Tao Zhou,et al. Modeling and control design of hydrogen production process for an active hydrogen/wind hybrid power system , 2009 .
[28] Monforti-Ferrario Fabio,et al. Renewable Energy Snapshots 2012 , 2013 .
[29] S. Basu,et al. Dynamic modeling and simulation of a proton exchange membrane electrolyzer for hydrogen production , 2011 .
[30] John K. Kaldellis,et al. Techno-economic comparison of energy storage systems for island autonomous electrical networks , 2009 .