Sliding-Mode Control of PEM Fuel Cells

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Sliding-mode Control of PEM Fuel Cells demonstrates the application of higher-order sliding-mode control to PEMFC dynamics showing the advantages of sliding modes.

The book introduces the theory of fuel cells and sliding-mode control. It contextualises PEMFCs both in terms of their development and within the hydrogen economy and today’s energy production situation as a whole. It then discusses fuel-cell operation principles, the mathematical background of high-order sliding-mode control and to a feasibility study for the use of sliding modes in the control of an automotive fuel stack.

Part II presents experimental results of sliding-mode-control application to laboratory fuel cells and deals with subsystem-based modelling, detailed design, and observability and controllability. Simulation results are contrasted with empirical data and performance, robustness and implementation issues are treated in depth. Possibilities for future research are also laid out.

Author(s): Cristian Kunusch, Paul Puleston, Miguel Mayosky (auth.)
Series: Advances in Industrial Control
Edition: 1
Publisher: Springer-Verlag London
Year: 2012

Language: English
Pages: 180
Tags: Control; Renewable and Green Energy; Automotive Engineering

Front Matter....Pages I-XX
Introducing Fuel Cells....Pages 1-11
PEM Fuel Cell Systems....Pages 13-33
Fundamentals of Sliding-Mode Control Design....Pages 35-71
Assessment of SOSM Techniques Applied to Fuel Cells. Case Study: Electric Vehicle Stoichiometry Control....Pages 73-103
Control-Oriented Modelling and Experimental Validation of a PEMFC Generation System....Pages 105-128
SOSM Controller for the PEMFC-Based Generation System. Design and Implementation....Pages 129-152
Conclusions, Open Lines and Further Reading....Pages 153-159
Back Matter....Pages 161-177