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Add Control: plant virtualization for control solutions in WWTP

(2013) WATER SCIENCE AND TECHNOLOGY. 68(2). p.296-302
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Abstract
This paper summarizes part of the research work carried out in the Add Control project, which proposes an extension of the wastewater treatment plant (WWTP) models and modelling architectures used in traditional WWTP simulation tools, addressing, in addition to the classical mass transformations (transport, physico-chemical phenomena, biological reactions), all the instrumentation, actuation and automation & control components (sensors, actuators, controllers), considering their real behaviour (signal delays, noise, failures and power consumption of actuators). Its ultimate objective is to allow a rapid transition from the simulation of the control strategy to its implementation at full-scale plants. Thus, this paper presents the application of the Add Control simulation platform for the design and implementation of new control strategies at the WWTP of Mekolalde.
Keywords
wastewater treatment plants, simulation, automatic control, component based modelling, NITROGEN REMOVAL, CONTROL STRATEGIES, ACTIVATED-SLUDGE PROCESSES

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MLA
Maiza, M., et al. “Add Control: Plant Virtualization for Control Solutions in WWTP.” WATER SCIENCE AND TECHNOLOGY, vol. 68, no. 2, 2013, pp. 296–302, doi:10.2166/wst.2013.225.
APA
Maiza, M., Bengoechea, A., Grau, P., De Keyser, W., Nopens, I., Brockmann, D., … Ayesa, E. (2013). Add Control: plant virtualization for control solutions in WWTP. WATER SCIENCE AND TECHNOLOGY, 68(2), 296–302. https://doi.org/10.2166/wst.2013.225
Chicago author-date
Maiza, M, A Bengoechea, P Grau, Webbey De Keyser, Ingmar Nopens, D Brockmann, JP Steyer, et al. 2013. “Add Control: Plant Virtualization for Control Solutions in WWTP.” WATER SCIENCE AND TECHNOLOGY 68 (2): 296–302. https://doi.org/10.2166/wst.2013.225.
Chicago author-date (all authors)
Maiza, M, A Bengoechea, P Grau, Webbey De Keyser, Ingmar Nopens, D Brockmann, JP Steyer, F Claeys, G Urchegui, O Fernández, and E Ayesa. 2013. “Add Control: Plant Virtualization for Control Solutions in WWTP.” WATER SCIENCE AND TECHNOLOGY 68 (2): 296–302. doi:10.2166/wst.2013.225.
Vancouver
1.
Maiza M, Bengoechea A, Grau P, De Keyser W, Nopens I, Brockmann D, et al. Add Control: plant virtualization for control solutions in WWTP. WATER SCIENCE AND TECHNOLOGY. 2013;68(2):296–302.
IEEE
[1]
M. Maiza et al., “Add Control: plant virtualization for control solutions in WWTP,” WATER SCIENCE AND TECHNOLOGY, vol. 68, no. 2, pp. 296–302, 2013.
@article{4232719,
  abstract     = {{This paper summarizes part of the research work carried out in the Add Control project, which proposes an extension of the wastewater treatment plant (WWTP) models and modelling architectures used in traditional WWTP simulation tools, addressing, in addition to the classical mass transformations (transport, physico-chemical phenomena, biological reactions), all the instrumentation, actuation and automation & control components (sensors, actuators, controllers), considering their real behaviour (signal delays, noise, failures and power consumption of actuators). Its ultimate objective is to allow a rapid transition from the simulation of the control strategy to its implementation at full-scale plants. Thus, this paper presents the application of the Add Control simulation platform for the design and implementation of new control strategies at the WWTP of Mekolalde.}},
  author       = {{Maiza, M and Bengoechea, A and Grau, P and De Keyser, Webbey and Nopens, Ingmar and Brockmann, D and Steyer, JP and Claeys, F and Urchegui, G and Fernández, O and Ayesa, E}},
  issn         = {{0273-1223}},
  journal      = {{WATER SCIENCE AND TECHNOLOGY}},
  keywords     = {{wastewater treatment plants,simulation,automatic control,component based modelling,NITROGEN REMOVAL,CONTROL STRATEGIES,ACTIVATED-SLUDGE PROCESSES}},
  language     = {{eng}},
  number       = {{2}},
  pages        = {{296--302}},
  title        = {{Add Control: plant virtualization for control solutions in WWTP}},
  url          = {{http://doi.org/10.2166/wst.2013.225}},
  volume       = {{68}},
  year         = {{2013}},
}

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