DocumentCode :
2909239
Title :
Model predictive control with a rigorous model of a Solid Oxide Fuel Cell
Author :
Jacobsen, Lee T. ; Spivey, Benjamin J. ; Hedengren, John D.
Author_Institution :
ExxonMobil Refinery & Supply, Baton Rouge, LA, USA
fYear :
2013
fDate :
17-19 June 2013
Firstpage :
3741
Lastpage :
3746
Abstract :
Degradation of Solid Oxide Fuel Cells (SOFCs) can be minimized by maintaining reliability parameters during load changes. These reliability parameters are critical to maintain power generation efficiency over an extended life of the SOFC. For SOFCs to be commercially viable, the life must exceed 20,000 hours for load following applications. This is not yet achieved because transient stresses damage the fuel cell and degrade the performance over time. This study relates the development of a dynamic model for SOFC systems in order to predict optimal manipulated variable moves along a prediction horizon. The model consists of hundreds of states and parameters that permit tracking of a realistic response. Previously, this detailed model was too computationally intensive to run in parallel with the SOFC process. The contribution of this paper is an application study to enable a large-scale simulation model to be used in Model Predictive Control (MPC) without simplification. Such a technology permits real time calculation of controller moves while loads are followed during operation. The contribution demonstrates the assumptions and approach necessary to provide real-time calculations for optimal predictive control operations using a rigorous model of the SOFC process. Large-scale process models are rarely employed in real-time control because of the prohibitive computational expense necessary to complete the calculations within the specified cycle time. An efficient model based predictive controller reduces operational fluctuations related to the startup and shutdown conditions, without exceeding reliability limits in the cells.
Keywords :
optimal control; predictive control; real-time systems; reliability; solid oxide fuel cells; MPC; SOFC process; SOFC system dynamic model development; large-scale simulation model; model predictive control; optimal predictive control operations; prediction horizon; real-time control; reliability limits; solid oxide fuel cell; Anodes; Computational modeling; Fuel cells; Fuels; Load modeling; Mathematical model; Reliability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference (ACC), 2013
Conference_Location :
Washington, DC
ISSN :
0743-1619
Print_ISBN :
978-1-4799-0177-7
Type :
conf
DOI :
10.1109/ACC.2013.6580409
Filename :
6580409
Link To Document :
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