Modeling and Control of Hydrosystems (eBook)

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2009 | 2009
XV, 409 Seiten
Springer London (Verlag)
978-1-84882-624-3 (ISBN)

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Modeling and Control of Hydrosystems - Xavier Litrico, Vincent Fromion
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Open-channel hydraulics are described by hyperbolic equations, derived from laws of conservation of mass and momentum, called Saint-Venant equations. In conjunction with hydraulic structure equations these are used to represent the dynamic behavior of water flowing in rivers, irrigation canals, and sewers.

Building on a detailed analysis of open-channel flow modeling, this monograph constructs control design methodologies based on a frequency domain approach. In practice, many open-channel systems are controlled with classical input-output controllers that are usually poorly tuned. The approach of this book, fashioning pragmatic engineering solutions for the control of open channels is given rigorous mathematical justification. Once the control objectives are clarified, a generic control design method is proposed, first for a canal pool, and then for a whole canal. The methods developed in the book have been validated on several canals of various dimensions up to a large scale irrigation canal.



Xavier Litrico is IGREF researcher at Cemagref, a public research center for environmental and agricultural applied research, and Vincent Fromion is 'directeur de recherches' at INRA, a public research center for agricultural research. Both authors have been collaborating on this subject for several years. Xavier Litrico holds a Ph.D. in Water Sciences and an HDR (Habilitation à Diriger des Recherches) in Automatic Control Engineering, and Vincent Fromion holds a Ph.D. and an HDR in Automatic Control Engineering. They have co-authored 10 papers in peer-reviewed scientific journals (both in automatic control and open channel hydraulics) and 15 papers in international conferences on this area of research.


Open-channel hydraulics are described by hyperbolic equations, derived from laws of conservation of mass and momentum, called Saint-Venant equations. In conjunction with hydraulic structure equations these are used to represent the dynamic behavior of water flowing in rivers, irrigation canals, and sewers. Building on a detailed analysis of open-channel flow modeling, this monograph constructs control design methodologies based on a frequency domain approach. In practice, many open-channel systems are controlled with classical input output controllers that are usually poorly tuned. The approach of this book, fashioning pragmatic engineering solutions for the control of open channels is given rigorous mathematical justification. Once the control objectives are clarified, a generic control design method is proposed, first for a canal pool, and then for a whole canal. The methods developed in the book have been validated on several canals of various dimensions up to a large scale irrigation canal.

Xavier Litrico is IGREF researcher at Cemagref, a public research center for environmental and agricultural applied research, and Vincent Fromion is "directeur de recherches" at INRA, a public research center for agricultural research. Both authors have been collaborating on this subject for several years. Xavier Litrico holds a Ph.D. in Water Sciences and an HDR (Habilitation à Diriger des Recherches) in Automatic Control Engineering, and Vincent Fromion holds a Ph.D. and an HDR in Automatic Control Engineering. They have co-authored 10 papers in peer-reviewed scientific journals (both in automatic control and open channel hydraulics) and 15 papers in international conferences on this area of research.

Modeling of Open Channel Flow.- Modeling of Open Channel Flow.- Frequency Domain Analysis of Open Channel Flow.- Finite Dimensional Models of Open Channel Flow.- A Simplified Model of Open Channel Flow.- Control of a Canal Pool.- Control of a Canal Pool with Hydraulic Structures.- Classical Control Policies for a Canal Pool.- Mixed Control of a Canal Pool.- Open-loop Control of a Canal Pool.- Control of a Multiple-pool Canal.- Decentralized Control of a Multiple-pool Canal.- Experimental Results on a Small-scale Canal.- Modeling and Control of Regulated Rivers.

Erscheint lt. Verlag 17.9.2009
Zusatzinfo XV, 409 p.
Verlagsort London
Sprache englisch
Themenwelt Technik Bauwesen
Technik Elektrotechnik / Energietechnik
Technik Maschinenbau
Technik Umwelttechnik / Biotechnologie
Schlagworte Canal Control • Control • Control Applications • control engineering • Control Theory • flow control • Fluid Dynamics • Frequency domain methods • Hyperbolic equations • Irrigation Canal • Open Channel Hydraulics • Riv • rivers • Saint-Venant Equations • Sewers • water industry and water technology • Water Quality and Water Pollution • Water resou • Water Resources Management
ISBN-10 1-84882-624-9 / 1848826249
ISBN-13 978-1-84882-624-3 / 9781848826243
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