Fuzzy Gain Scheduling and Feed-Forward Control for Drinking Water Treatment Plants (DWTP) Chlorination Process
Chlorination in drinking water treatment plants (DWTP) is the final process applied to water before it is sent to storage tanks in the supply network for subsequent human consumption. An excessive dosage of chlorine or, conversely, too small a dosage, may breach existing legal regulations on mandato...
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doaj-0148ed60ca8347fcaef464104a0141ad2021-03-30T01:51:03ZengIEEEIEEE Access2169-35362020-01-01811001811003210.1109/ACCESS.2020.30021569115605Fuzzy Gain Scheduling and Feed-Forward Control for Drinking Water Treatment Plants (DWTP) Chlorination ProcessJavier Gamiz0Ramon Vilanova1https://orcid.org/0000-0002-8035-5199Herminio Martinez-Garcia2Yolanda Bolea3Antoni Grau4Automatic Control Department, Universitat Politècnica de Catalunya, Barcelona, SpainDepartment of Telecommunications and Systems Engineering, Universitat Autònoma de Barcelona, Barcelona, SpainElectronics Engineering Department, Universitat Politècnica de Catalunya, Barcelona, SpainAutomatic Control Department, Universitat Politècnica de Catalunya, Barcelona, SpainAutomatic Control Department, Universitat Politècnica de Catalunya, Barcelona, SpainChlorination in drinking water treatment plants (DWTP) is the final process applied to water before it is sent to storage tanks in the supply network for subsequent human consumption. An excessive dosage of chlorine or, conversely, too small a dosage, may breach existing legal regulations on mandatory limits. Furthermore, excessive amounts generate an unnecessary cost in terms of chlorine and, collaterally, problems due to an increase in the maximum permitted amounts of such by-products as trihalomethanes, which are carcinogenic compounds for humans. In DWTP where there is no significant variability in the quality of the water to be treated, a type of control that is proportional to the flow rate in the effluent can have fully satisfactory results. However, in a control strategy applied when there are inherently long delays in the process, variability in the quality of the water to be treated and considerable variations in flow, a proportional type of control does not tend to work and an alternative type is needed. This article presents the strategy and results of a control method that combines a feed-forward system with gain scheduling in a (Proportional-Integral) PI control. The control system design was validated beforehand by simulation and then applied to a real DWTP, producing satisfactory experimental results.https://ieeexplore.ieee.org/document/9115605/Chlorination processdrinking water treatment plantsfuzzy controlgain scheduling |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Javier Gamiz Ramon Vilanova Herminio Martinez-Garcia Yolanda Bolea Antoni Grau |
spellingShingle |
Javier Gamiz Ramon Vilanova Herminio Martinez-Garcia Yolanda Bolea Antoni Grau Fuzzy Gain Scheduling and Feed-Forward Control for Drinking Water Treatment Plants (DWTP) Chlorination Process IEEE Access Chlorination process drinking water treatment plants fuzzy control gain scheduling |
author_facet |
Javier Gamiz Ramon Vilanova Herminio Martinez-Garcia Yolanda Bolea Antoni Grau |
author_sort |
Javier Gamiz |
title |
Fuzzy Gain Scheduling and Feed-Forward Control for Drinking Water Treatment Plants (DWTP) Chlorination Process |
title_short |
Fuzzy Gain Scheduling and Feed-Forward Control for Drinking Water Treatment Plants (DWTP) Chlorination Process |
title_full |
Fuzzy Gain Scheduling and Feed-Forward Control for Drinking Water Treatment Plants (DWTP) Chlorination Process |
title_fullStr |
Fuzzy Gain Scheduling and Feed-Forward Control for Drinking Water Treatment Plants (DWTP) Chlorination Process |
title_full_unstemmed |
Fuzzy Gain Scheduling and Feed-Forward Control for Drinking Water Treatment Plants (DWTP) Chlorination Process |
title_sort |
fuzzy gain scheduling and feed-forward control for drinking water treatment plants (dwtp) chlorination process |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2020-01-01 |
description |
Chlorination in drinking water treatment plants (DWTP) is the final process applied to water before it is sent to storage tanks in the supply network for subsequent human consumption. An excessive dosage of chlorine or, conversely, too small a dosage, may breach existing legal regulations on mandatory limits. Furthermore, excessive amounts generate an unnecessary cost in terms of chlorine and, collaterally, problems due to an increase in the maximum permitted amounts of such by-products as trihalomethanes, which are carcinogenic compounds for humans. In DWTP where there is no significant variability in the quality of the water to be treated, a type of control that is proportional to the flow rate in the effluent can have fully satisfactory results. However, in a control strategy applied when there are inherently long delays in the process, variability in the quality of the water to be treated and considerable variations in flow, a proportional type of control does not tend to work and an alternative type is needed. This article presents the strategy and results of a control method that combines a feed-forward system with gain scheduling in a (Proportional-Integral) PI control. The control system design was validated beforehand by simulation and then applied to a real DWTP, producing satisfactory experimental results. |
topic |
Chlorination process drinking water treatment plants fuzzy control gain scheduling |
url |
https://ieeexplore.ieee.org/document/9115605/ |
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