An integrated software architecture for the pollution-based real-time control of urban drainage systems

Author:

Romero Luis1,Joseph-Duran Bernat2,Sun Congcong1,Meseguer Jordi2,Cembrano Gabriela12,Guasch Ramón3,Martínez Montse3,Muñoz Eduard4,Puig Vicenç1

Affiliation:

1. Institut de Robòtica i Informàtica Industrial (CSIC-UPC), 46 Llorens i Artigas Street, 08028 Barcelona, Spain

2. CETaqua, Water Technology Centre (SUEZ Spain Group), 75 Esplugues Road, 08940 Barcelona, Spain

3. Aquatec, Proyectos para el Sector del Agua (SUEZ Spain Group), 48 Passeig de la Zona Franca, 08038 Barcelona, Spain

4. Aquambiente Servicios para el Sector del Agua, SAU (SUEZ Spain Group), 48 Passeig de la Zona Franca, 08038 Barcelona, Spain

Abstract

Abstract This paper presents a complete methodology for the development of an integrated software architecture, which can achieve a closed-loop application between the integrated real-time control (RTC) and a virtual reality simulation for the urban drainage system (UDS). Quality measurements are considered during the simulation and optimization process. Model predictive control (MPC) and rule-based control (RBC) are the two main RTC methods embedded in this architecture. The proposed integration environment allows the different software components to efficiently and effectively communicate and work in a system-wide way, as well as to execute all the necessary steps regarding input parameter management, scenario configuration and results extraction. The proposed approaches are implemented into a pilot based on the Badalona UDS (Spain). Results from different scenarios with individual control approaches and rain episodes are evaluated and discussed.

Funder

European Commission

Fundación General CSIC

Ministerio de Ciencia, Innovación y Universidades

Publisher

IWA Publishing

Subject

Atmospheric Science,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering,Water Science and Technology

Reference28 articles.

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4. A critical review of integrated urban water modelling – urban drainage and beyond;Environmental Modelling & Software,2014

5. Designing and implementing a multi-core capable integrated urban drainage modelling Toolkit: lessons from CityDrain3;Advances in Engineering Software,2016

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