A robust unknown input observer for open channel irrigation systems

In agriculture, most of the water for irrigation is transported by means of open-flow channel networks. To ensure their optimal operation, it is very important to monitor all system state variables accurately. This paper proposes a new state estimation scheme able to mitigate the effect of unknown i...

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Published inControl engineering practice Vol. 165; p. 106510
Main Authors Arango, Juan Pablo, Etienne, Lucien, Duviella, Eric, Langueh, Kokou, Segovia, Pablo, Puig, Vicenç
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.12.2025
Elsevier
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ISSN0967-0661
DOI10.1016/j.conengprac.2025.106510

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Abstract In agriculture, most of the water for irrigation is transported by means of open-flow channel networks. To ensure their optimal operation, it is very important to monitor all system state variables accurately. This paper proposes a new state estimation scheme able to mitigate the effect of unknown inputs (e.g., user demands, seepage and rain) and noise based on a robust unknown input observer (RUIO) that expresses the canal control-oriented model as a one-sided Lipschitz (OSL) quadratically inner bounded (QIB) system. The modeling methodology also includes the discharges of each gate, along with a transition flow that considers the effect of potential energy (channel slope) and kinetic energy (velocity in the transport of matter and frictional losses). The performance of the proposed observer is evaluated on the Corning channel benchmark using data provided by SIC2, which is a high-fidelity simulator that solves numerically the Saint-Venant equations and thus generates data that is close to the real canal operation. The obtained results demonstrate that the RUIO is capable of estimating the upstream heights from the downstream height measurements (which are subject to noise and unknown inputs), hence showing that this strategy can lead to savings in terms of required sensors.
AbstractList In agriculture, most of the water for irrigation is transported by means of open-flow channel networks. To ensure their optimal operation, it is very important to monitor all system state variables accurately. This paper proposes a new state estimation scheme able to mitigate the effect of unknown inputs (e.g., user demands, seepage and rain) and noise based on a robust unknown input observer (RUIO) that expresses the canal control-oriented model as a one-sided Lipschitz (OSL) quadratically inner bounded (QIB) system. The modeling methodology also includes the discharges of each gate, along with a transition flow that considers the effect of potential energy (channel slope) and kinetic energy (velocity in the transport of matter and frictional losses). The performance of the proposed observer is evaluated on the Corning channel benchmark using data provided by SIC2, which is a high-fidelity simulator that solves numerically the Saint-Venant equations and thus generates data that is close to the real canal operation. The obtained results demonstrate that the RUIO is capable of estimating the upstream heights from the downstream height measurements (which are subject to noise and unknown inputs), hence showing that this strategy can lead to savings in terms of required sensors.
ArticleNumber 106510
Author Segovia, Pablo
Arango, Juan Pablo
Etienne, Lucien
Duviella, Eric
Langueh, Kokou
Puig, Vicenç
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  givenname: Kokou
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  givenname: Vicenç
  surname: Puig
  fullname: Puig, Vicenç
  organization: Department of Automatic Control, Universitat Politècnica de Catalunya - BarcelonaTECH, Av. Diagonal 647, Barcelona, 08028, Spain
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Keywords Robust nonlinear state estimation
Open channel irrigation systems
One-sided Lipschitz systems
Unknown Input Observer
Language English
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Snippet In agriculture, most of the water for irrigation is transported by means of open-flow channel networks. To ensure their optimal operation, it is very important...
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SubjectTerms Computer Science
Mathematics
One-sided Lipschitz systems
Open channel irrigation systems
Robust nonlinear state estimation
Unknown Input Observer
Title A robust unknown input observer for open channel irrigation systems
URI https://dx.doi.org/10.1016/j.conengprac.2025.106510
https://hal.science/hal-05239538
Volume 165
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