This book presents a set of approaches for the real-time monitoring and control of drinking-water networks based on advanced information and communication technologies. It shows the reader how to achieve significant improvements in efficiency in terms of water use, energy consumption, water loss minimization, and water quality guarantees.
The methods and approaches presented are illustrated and have been applied using real-life pilot demonstrations based on the drinking-water network in Barcelona, Spain.
The proposed approaches and tools cover:
• decision-making support for real-time optimal control of water transport networks, explaining how stochastic model predictive control algorithms that take explicit account of uncertainties associated with energy prices and real demand allow the main flow and pressure actuators―pumping stations and pressure regulation valves― and intermediate storage tanks to beoperated to meet demand using the most sustainable types of source and with minimum electricity costs;• decision-making support for monitoring water balance and distribution network quality in real time, implementing fault detection and diagnosis techniques and using information from hundreds of flow, pressure, and water-quality sensors together with hydraulic and quality-parameter-evolution models to detect and locate leaks in the network, possible breaches in water quality, and failures in sensors and/or actuators;• consumer-demand prediction, based on smart metering techniques, producing detailed analyses and forecasts of consumption patterns, providing a customer communications service, and suggesting economic measures intended to promote more efficient use of water at the household level.
Researchers and engineers working with drinking-water networks will find this a vital support in overcoming the problems associated with increasedpopulation, environmental sensitivities and regulation, aging infrastructures, energy requirements, and limited water sources.
"Sinopsis" puede pertenecer a otra edición de este libro.
Prof. Vicenç Puig received his Ph.D. Degree in Control Engineering in 1999 and his Telecommunications Engineering Degree in 1993, both from the Technical University of Catalonia (UPC), Barcelona, Spain. He is currently a Professor and Chair of the Automatic Control Department and leader of the Advanced Control Systems (SAC) research group at UPC. He is also a researcher at the Institut de Robòtica i Informàtica Industrial, a Joint Research Center of the UPC and CSIC (Spanish Research Council). His main research interests are advanced control (using MPC and LPV approaches), diagnosis, prognosis and fault-tolerant control of dynamic systems. He has led many industrial projects concerning the application of previous techniques to large-scale systems (mainly, in the water domain). He is currently the vice-chair of IFAC Technical Committee on Fault Detection, Supervision and Safety of Technical Processes (SAFEPROCESS). He has been involved in many European projects and networks and has published over 400 papers in international conference proceedings and about 120 in scientific journals. He has also edited the Springer Book “Identification and Control: The Gap between Theory and Practice”.
Dr. Gabriela Cembrano received her MSc and PhD degrees in Industrial Engineering and Automatic Control from the Polytechnical University of Catalonia (UPC). She has been a tenured researcher of the Spanish National Research Council (CSIC) at the Institute of Robotics and Industrial Computing (IRI) since 1989. Since 2007, she is a
lso a member of the Scientific Direction of CETaqua Water technology Centre. Her main research area is Control Engineering. She has been involved in numerous industrial projects on Modelling and Optimal Control of drinking-water and urban drainage systems and she has taken part in several Spanish and European research projects in this field. Most recently, she has been is Scientific Director of EC project EFFINET Prof. Joseba Quevedo received hisM.Sc. in Electrical, Electronic, and Control Engineering in 1973 and the Ph.D. in control engineering from the University Paul Sabatier of Toulouse, France, in 1976 and his Ph.D. in Control Engineering from the Technical University of Catalonia in 1982. Since 1979 he has been with the Technical University of Catalonia, where he has been a full professor since 1990. His current research interests include advanced control, identification and parameter estimation, fault detection and diagnosis, and fault-tolerant control and their applications to large-scale systems and industrial processes. He has also edited the Springer Book “Identification and Control: The Gap between Theory and Practice”."Sobre este título" puede pertenecer a otra edición de este libro.
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Taschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This book presents a set of approaches for the real-time monitoring and control of drinking-water networks based on advanced information and communication technologies. It shows the reader how to achieve significant improvements in efficiency in terms of water use, energy consumption, water loss minimization, and water quality guarantees.The methods and approaches presented are illustrated and have been applied using real-life pilot demonstrations based on the drinking-water network in Barcelona, Spain.The proposed approaches and tools cover:- decision-making support for real-time optimal control of water transport networks, explaining how stochastic model predictive control algorithms that take explicit account of uncertainties associated with energy prices and real demand allow the main flow and pressure actuators-pumping stations and pressure regulation valves- and intermediate storage tanks to be operated to meet demand using the most sustainable types of source and with minimum electricity costs;- decision-making support for monitoring water balance and distribution network quality in real time, implementing fault detection and diagnosis techniques and using information from hundreds of flow, pressure, and water-quality sensors together with hydraulic and quality-parameter-evolution models to detect and locate leaks in the network, possible breaches in water quality, and failures in sensors and/or actuators;- consumer-demand prediction, based on smart metering techniques, producing detailed analyses and forecasts of consumption patterns, providing a customer communications service, and suggesting economic measures intended to promote more efficient use of water at the household level.Researchers and engineers working with drinking-water networks will find this a vital support in overcoming the problems associated with increased population, environmental sensitivities and regulation, aging infrastructures, energy requirements, and limited water sources. 456 pp. Englisch. Nº de ref. del artículo: 9783319844831
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Condición: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Equips the entry-level reader with the background necessary to start work or research on the modeling, simulation, monitoring and control of drinking-water networksIncludes case studies that readers can use to test their own algorithmsProvi. Nº de ref. del artículo: 458624805
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