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Advanced integrated real-time control of combined urban drainage systems using MPC: Badalona case study

Author
Sun, C.; Joseph, B.; Cembrano, M.; Puig, V.; Meseguer, J.
Type of activity
Presentation of work at congresses
Name of edition
13th International Conference on Hydroinformatics
Date of publication
2018
Presentation's date
2018
Book of congress proceedings
HIC 2018: 13th International Conference on Hydroinformatics, Palermo, Italia, 1-6 July 2018, proceedings book
First page
2033
Last page
2041
Project funding
DEOCS: Monitorización, diagnostico y control tolerante a fallos de sistemas ciberfísicos con métodos basados en datos
Efficient integrated real-time control in urban drainage and wastewater treatment plants for environmental protection - LIFE14 ENV/ES/000860
Unit of Excellence María de Maeztu
Repository
http://hdl.handle.net/2117/131287 Open in new window
URL
https://www.hic2018.org/wp-content/uploads/HIC2018-final-programme.pdf Open in new window
Abstract
Combined urban drainage system (CUDS) collect both wastewater and raining water through sewer networks to wastewater treatment plants (WWTP) before releasing to the environment. During storm weather, rain and wastewater can overload the capacity of the CUDS and/or the WWTPs, producing combined sewer overflows (CSO). In order to improve the management efficiency of CUDS, advanced real-time control (RTC) of detention and diversion infrastructures in the sewer systems has been proven to contribute ...
Citation
Sun, C. [et al.]. Advanced integrated real-time control of combined urban drainage systems using MPC: Badalona case study. A: International Conference on Hydroinformatics. "HIC 2018: 13th International Conference on Hydroinformatics, Palermo, Italia, 1-6 July 2018, proceedings book". 2018, p. 2033-2041.
Keywords
predictive control, transport control.
Group of research
CS2AC-UPC - Supervision, Safety and Automatic Control
SAC - Advanced Control Systems

Participants