Development of a Dynamic Model for Diagnosis and Control of an Integrated Stack Module Based on Solid Oxide Fuel Cells
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Elsevier BV
Reference8 articles.
1. http://www.diamond-sofc-project.eu/. Accessed 05 Jul 2016.
2. Sorrentino M, Pianese C. Model-based development of low-level control strategies for transient operation of solid oxide fuel cell systems. J of Power Sources 2011; 196:9036-9045.
3. A lumped dynamic modelling approach for model-based control and diagnosis of solid oxide fuel cell system with anode off-gas recycling;Marra;ECS Transactions,2015
4. The effect of bias in gas temperature measurements on the control of a Solid Oxide Fuel Cells system;Tsikonis;J of Power Sources,2014
5. Lienhard IV JH, Lienhard V JH. A Heat Transfer Textbook. 3rd ed., Phlogiston Press Cambridge, 2008, Massachusetts, U.S.A.
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