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Título: | An integrated software architecture for the pollution-based real-time control of urban drainage systems |
Autor: | Romero Ben, Luis CSIC ORCID; Joseph-Duran, Bernat CSIC ORCID; Sun, Congcong CSIC ORCID ; Meseguer, Jordi; Cembrano, Gabriela CSIC ORCID ; Guasch Palma, Ramon; Martínez, Montse; Puig, Vicenç CSIC ORCID | Palabras clave: | Key performance indicators Pollution-based control Software architecture Urban drainage system Water bodies protection |
Fecha de publicación: | 1-may-2021 | Editor: | International Water Association | Citación: | Journal of Hydroinformatics 23(3): 671-687 (2021) | Resumen: | 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. | Versión del editor: | http://dx.doi.org/10.2166/HYDRO.2021.149 | URI: | http://hdl.handle.net/10261/261092 | DOI: | 10.2166/HYDRO.2021.149 | Identificadores: | doi: 10.2166/HYDRO.2021.149 e-issn: 1465-1734 issn: 1464-7141 |
Aparece en las colecciones: | (IRII) Artículos |
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