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Optimal Control of Wind Energy Systems: Towards a Global Approach (Advances in Industrial Control), by Iulian Munteanu, Antoneta Iuliana B
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Covering all aspects of this important topic, this work presents a review of the main control issues in wind power generation, offering a unified picture of the issues surrounding its optimal control. Discussion is focused on a global dynamic optimization approach to wind power systems using a set of optimization criteria which comply with a comprehensive group of requirements including: energy conversion efficiency; mechanical reliability; and quality of the energy provided.
- Sales Rank: #6463567 in Books
- Brand: Brand: Springer
- Published on: 2008-03-31
- Original language: English
- Number of items: 1
- Dimensions: 9.21" h x .75" w x 6.14" l, 1.34 pounds
- Binding: Hardcover
- 286 pages
- Used Book in Good Condition
Review
From the reviews:
�“The book under review provides technical background on wind turbines specifically tailored for the controls engineer, and thus the target audience for this text is members of the control research community who are interested in wind energy applications. … an excellent reference for researchers in the field pursuing one of the methodologies covered in the text. … the book demonstrates a few advanced control approaches with enough detail for the interested reader to embark on research using the methods presented in the book.” (Jason H. Laks and Lucy Y. Pao, IEEE Control Systems Magazine, Vol. 29, June, 2009) From the Back Cover
Owing to the stochastic nature of their primary energy source, workable performance of wind energy conversion systems cannot be achieved without the contribution of automatic control.
Optimal Control of Wind Energy Systems presents a thoroughgoing review of the main control issues in wind power generation, offering a unified picture of the issues in optimal control of wind power generation. A series of optimal control techniques are analyzed, assessed and compared, starting with the classical ones, like PI control, maximum power point strategies and�gain-scheduling techniques, and continuing with some modern ones: sliding-mode techniques, feedback linearization control and robust control. Discussion is focused on a global dynamic optimization approach to wind power systems using a set of optimization criteria which comply with a comprehensive group of requirements including: energy conversion efficiency; mechanical reliability; and quality of the energy provided.
The main results are presented along with illustration by case studies and MATLAB�/Simulink� simulation assessment. The corresponding programmes and block diagrams can be downloaded from the book’s page at springer.com. For some of the case studies presented, real-time simulation results are also available, illustrative examples which will be useful in easing technology transfer in control engineering associated with wind power systems.
Control engineers, researchers and graduate students interested in learning and applying systematic optimization procedures to wind power systems will find this a most useful guide to the field.
About the Author
The authors are with the Advanced Control System Research Centre at "Dunarea de Jos" University of Galati in Romania. Their research interests are in the domain of static and dynamic optimizations, with a focus on dynamic system optimal control. The interest in the control of the wind energy conversion systems dates back to 1993.
Iulian Munteanu received a B.Eng. degree in applied electronics from "Dunarea de Jos" University of Galati in Romania in 1996, a M.Sc. degree in instrumentation and control from Universit� du Havre in France in 1997 and a Ph.D. degree in automatic control systems from "Dunarea de Jos" University of Galati in Romania in 2006, by defending a dissertation on the optimal control of wind power systems. From 1998 he is with the Department of Electronics and Telecommunications from "Dunarea de Jos" University of Galati in Romania. Between 2000 and 2005 he has had three doctoral stages at Laboratoire d'�lectrotechnique de Grenoble in France, where he has worked on controlling the variable-speed asynchronous-machine-based wind power systems. He has authored and co-authored 1 book, 7 research reports, about 10 papers at international conferences and 5 papers in international journals. At the present he is a post-doctoral researcher at Grenoble G�nie �lectrique Laboratory in France.
Antoneta Iuliana Bratcu received a M.Sc. degree in electrical engineering from "Dunarea de Jos University of Galati in Romania in 1996 and a doctoral degree in automatic control and computer science from Universit� de Franche-Comt� de Besan�on in France in 2001. Her research interests include both discrete and continuous optimization. Between 2002 and 2005 she has had two post-doctoral stages respectively at Universit� de Technologie de Troyes and �cole Nationale Sup�rieure des Mines de Saint �tienne in France. She has authored and co-authored 2 books, 3 research reports, more than 25 papers at international conferences and 9 papers in international journals. In 2007 she joined the Department of Electrical Energy Conversion Systems from "Dunarea de Jos" University of Galati in Romania, where she is an associate professor. She is presently working as a post-doctoral researcher at Grenoble G�nie �lectrique Laboratory in France.
Nicolas-Antonio Cutululis received a M.Sc. degree in advanced automatic control and artificial intelligence and a Ph.D. degree in automatic control systems, both from "Dunarea de Jos" University of Galati in Romania in 1999 and 2005 respectively. His Ph.D. dissertation thesis concerns the design of control strategies for hybrid wind energy conversion systems. He has authored and co-authored 1 book, 5 research reports, 5 papers at international conferences and 7 papers in international journals. From 1999 he joined the Department of Electrical Energy Conversion Systems at "Dunarea de Jos University of Galati in Romania. At the present he is a scientist with the Wind Energy Department at Ris� National Laboratory in Denmark.
Emil Ceanga received a M.Sc. degree in electronics and a Ph.D. degree in automatic control systems, both from Bucharest Polytechnic Institute in Romania, in 1961 and 1969 respectively. Between 1993 and 2004 he has been five times visiting professor at Groupe de Recherche en Automatique et �lectrotechnique at Universit� du Havre in France and one time visiting professor at Universit� du Qu�bec � Rimouski in Canada. In 2004 he received the distinction "Palmes Acad�miques" from the French Government. He has advised 15 Ph.D. dissertations and has authored and co-authored 15 books and more than 130 papers at international conferences and in international journals. Between 2001 and 2006 he was Director of the Advanced Control System Research Centre at "Dunarea de Jos University of Galati in Romania. He is presently a professor of electrical engineering at the Department of Electrical Energy Conversion Systems at the same university.
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