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Optimal Real-Time Control of Sewer Networks

Optimal Real-Time Control of Sewer Networks


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About the Book

Introduction Modelling of Sewer Network Flow Flow Control in Sewer Networks Nonlinear Optimal Control Multivariable Feedback Control Application Example Simulation Results Conclusions and Future Research
About the Author:

Magdalene Marinaki was born in Chania, Greece. In 1993, she received the Dipl.- Eng. degree in Production Engineering and Management from the Technical University of Crete, Greece, while she received the M. Sc. and Ph. D. degrees in Production Engineering and Management from the same University in 1995 and 2002, respectively.

She received a scholarship by the Institute of National Scholarships and the Technical Chamber of Greece in the academic year 1991-1992 for high performance in her studies. Since March 1994, she has been a Research and Teaching Associate of the Dynamic Systems and Simulation Laboratory of the Technical University of Crete. She has participated in research projects and she has assisted undergraduate courses. Since September 2000, she has been teaching at the Technological Educational Institute of Crete, Branch of Chania. Since September 2002, she has been a contract lecturer at the Technical University of Crete, Department of Production Engineering and Management. She is the author of research reports and papers in international journals and scientific conferences. Her research interests include optimal and automatic control, operations research and applications to water systems, transportation systems and further areas. She is a member of the Technical Chamber of Greece (TEE).

Markos Papageorgiou was born in Thessaloniki, Greece, in 1953. He received the Diplom-Ingenieur and Doktor-Ingenieur (honors) degrees in Electrical Engineering from the Technical University of Munich, Germany, in 1976 and 1981, respectively. From 1976 to 1982 he was a Research and Teaching Assistant at the Control Engineering Chair, Technical University of Munich. He was a Free Associate with Dorsch Consult, Munich (1982-1988), and with Institute National de Recherche sur les Transports et leur Sécurité (INRETS), Arcueil, France (1986-1988). From 1988 to 1994 he was a Professor of Automation at the Technical University of Munich. Since 1994 he has been a Professor at the Technical University of Crete, Chania, Greece. He was a Visiting Professor at the Politecnico di Milano, Italy (1982), at the Ecole Nationale des Ponts et Chaussées, Paris (1985-1987), and at MIT, Cambridge (1997, 2000); and a Visiting Scholar at the University of Minnesota (1991, 1993), University of Southern California (1993) and the University of California, Berkeley (1993, 1997, 2001).

Dr. Papageorgiou is the author of the books Applications of Automatic Control Concepts to Traffic Flow Modeling and Control (Springer, 1983) and Optimierung (Oldenbourg, 1991; 1996), the editor of the Concise Encyclopedia of Traffic and Transportation Systems (Pergamon Press, 1991), and the author or co-author of some 230 technical papers. His research interests include automatic control and optimization theory and applications to traffic and transportation systems, water systems and further areas. He is an Associate Editor of Transportation Research-Part C, of IEEE Transactions on Intelligent Transportation Systems and a member of the IEEE Control System Society, Conference Editorial Board, and Chairman of the IFAC Technical Committee on Transportation Systems. He is a member of the Technical Chamber of Greece (TEE) and a Fellow of IEEE. He received a DAAD scholarship (1971-1976), the 1983 Eugen-Hartmann award from the Union of German Engineers (VDI), and a Fulbright Lecturing/Research Award (1997).


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Product Details
  • ISBN-13: 9781447156734
  • Publisher: Springer
  • Publisher Imprint: Springer
  • Edition: 2005 ed.
  • Language: English
  • Returnable: N
  • Spine Width: 10 mm
  • Width: 156 mm
  • ISBN-10: 1447156730
  • Publisher Date: 29 Nov 2014
  • Binding: Paperback
  • Height: 234 mm
  • No of Pages: 161
  • Series Title: Advances in Industrial Control
  • Weight: 313 gr


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