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Optimization of the Fuel Cell Renewable Hybrid Power Systems

Optimization of the Fuel Cell Renewable Hybrid Power Systems

Nicu Bizon

 

Verlag Springer-Verlag, 2020

ISBN 9783030402419 , 336 Seiten

Format PDF

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96,29 EUR

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Optimization of the Fuel Cell Renewable Hybrid Power Systems


 


This book offers a comprehensive review of renewable energy sources and optimization strategies in hybrid power systems (HPSs). It analyses the main issues and challenges in the renewable (REW) HPS field, particularly those using fuel cell (FC) systems as their main source of energy. It then offers innovative solutions to these issues, comparing them to solutions currently found in the literature.
The book discusses optimization algorithms and energy management strategies. The focus is chiefly on FC net power maximization and fuel economy strategies based on global optimization. The last two chapters discuss energy harvesting from photovoltaic systems and how to mitigate energy variability in REW FC HPS. The main content is supplemented by numerous examples and simulations. Academics, students and practitioners in relevant industrial branches interested in REW HPS finds it of considerable interest, as a reference book or for building their own HPSs based on the examples provided.





Professor Nicu Bizon completed his degree in Electronic Engineering at the University Polytechnic of Bucharest, Romania, in 1986, and his Ph.D. in Automatic Systems and Control at the same university in 1996. He then worked in hardware design with Dacia Renault SA, Romania. Currently, he is a Professor at the University of Pitesti, Romania, and was Dean of the Faculty of Electronics, Communication and Computers (2012-2017). He was Head of University Research Department and Executive Director of the Research Centre 'Modeling and simulation processes and systems' for several years each, managing four research projects in the field of Green and Hydrogen Energy and serving as a team member in ten other projects in the same research field. He is the Editor of seven books and author of five more on green energy, hybrid power sources and power converters. He has authored or co-authored over 200 papers in journals and international conference proceedings. His current research interests include the broad area of nonlinear systems in both dynamics and control applied to the green energy field. He is Editor-in-Chief of the Journal of Electrical Engineering, Electronics, Control and Computer Science and a member of the Editorial/Technical Board for several international journals and conferences. He has been a senior member of the IEEE since 2016.