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March 2009, the 1st High Performance Electronic Controllable 5KW PEM Fuel Cell Power Unit Was Successfully Commissioned in Singapore--Nanyang Technological University (School of EEE) • 4th Dec 2009, the Complete Integrated System of 1KW PEM Fuel Cell Electrical Power Generator with Hydrogen Leak Detecting System were Successfully Installed and Commissioned in UTM (Universiti of Teknologi Malaysia, Skudai)--The Faculty of Electrical Engineering. • Design & Build A Single-Axis PV (Maximum PV Modules Installed 3 X 175Wp Monocrystalline PV) Tracker for Ngee Ann Polytechnic was Delivered in Oct 2009 • To Supply & Install ITE (Dover Campus) Project for Roof Mounting of 200W Vertical Axis Wind Turbine (VAWT) System at 4th January 2010. • Shell Eco-Marathon 2010 (Solar-Powered Motors Category)--Supply a Complete Flexible PV system to ITE (Dover Campus). • Shell Eco-Marathon 2010 (Electric Motors Category)--Design, Supply & Install a Complete PEM Fuel Cell Powered System for ITE (Dover Campus). • Two-Sets of 99.9999% @ 500 ml/min. (max. delivery pressure at 6 bar) Water-Electrolysis Hydrogen Generators were installed and commissioned in Nanyang Polytechnic in Dec. 2010. • Self-Sustainable Solar-Hydrogen Fuel Cell System--Design, Supply & Install an Integrated 300W PEM Fuel Cell Powered System, 4X900NL Canisters & 60slph Water Electrolysed Hydrogen Generator for ITE (West Campus) in April 2011. • NeuroFlash had designed and delivered the Fuel Cell R&D Kit to Nanyang Polytechnic in May 2011. • Successfully Delivered & Commissioned a System of PEM Fuel Cell Test Station for Republic Polytechnic (School of Engineering) at 28th October 2011. • Completion Work of Retrofitted and Modified the Nanyang Polytechnics (School of Engineering-Life Science & Chemical Process) Existing PEM Fuel Cell Monitoring Station at 9th November 2011. • 22nd Aug. 2013, delivered 40-sets of 95Wp Mono-PV to Nanyang Technological University (Earth Observation Lab). • 12th Dec. 2013, Solar-Powered Water-Mill Project for Kranji Primary School. • 13th Jan. 2014, delivered 20-sets of 95Wp and 2-sets of 50Wp Mono-PV to Nanyang Technological University (Earth Observation Lab). • 14th July 2014, delivered 60-sets of 100Wp Mono-PV to Nanyang Technological University (Earth Observation Lab). • 28th July 2015, Completed the Project (PV Solutions for Pond Pump and Charging Station) for National Junior College. • 22nd Oct. 2015, Completed installation of Wind-Solar Hybrid Power System for Temasek Junior College. • In Dec. 2015, Supply & Delivery a package of 500W PEM Fuel Cell System, DC-DC-Converter, 1000W Supercapacitor & Hydrogen Leak Detector for Shell Eco-Marathon 2016 (Electric Motors Category--to ITE (West Campus).
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Last Updated:
Tuesday, March 16, 2021
 
Control of Fuel Cell Power Systems: Principles, Modeling, Analysis and Feedback Design (Advances in Industrial Control)
Product code: 

The problem of greenhouse gas (particularly carbon dioxide) release during power generation in fixed and mobile systems is widely acknowledged. Fuel cells are electrochemical devices offering clean and efficient energy production by the direct conversion of gaseous fuel into electricity. As such, they are under active study for commercial stationary power generation, residential applications and in transportation. The control of fuel cell systems under a variety of environmental conditions and over a wide operating range is a crucial factor in making them viable for extensive use in every-day technology.

In Control of Fuel Cell Power Systems the application of fuel cells in automotive powertrains is emphasized because of the significance of the contribution to global CO2 emissions made by ground vehicle propulsion and because of the challenge presented by the accompanying control problems.

The authors’ comprehensive control-oriented approach provides:

  • An overview of the underlying physical principles and the main control objectives and difficulties associated with the implementation of fuel cell systems.
  • System-level dynamic models derived from the physical principles of the processes involved.
  • Formulation, in-depth analysis and detailed control design for two critical control problems, namely, the control of the cathode oxygen supply for a high-pressure direct hydrogen fuel cell system and control of the anode hydrogen supply from a natural gas fuel processor system.
  • Multivariable controllers that attenuate restraints resulting from lack of sensor fidelity or actuator authority.
  • Real-time observers for stack variables that confer redundancy in fault detection processes.
  • Examples of the assistance of control analysis in fuel cell redesign and performance improvement.
  • Downloadable SIMULINK® model of a fuel cell for immediate use supplemented by sample MATLAB® files with which to run it and reproduce some of the book plots.

Primarily intended for researchers and students with a control background looking to expand their knowledge of fuel cell technology, Control of Fuel Cell Power Systems will also appeal to practicing fuel cell engineers through the simplicity of its models and the application of control algorithms in concrete case studies. The thorough coverage of control design will be of benefit to scientists dealing with the electrochemical, materials and fluid-dynamic aspects of fuel cells.

L x W x D:

241 x 157 x 15mm

(9.5" x 6.2" x 0.6")

Weight:

390g


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