In this paper, a new model based approach to leakage localization in drinking water networks is proposed based on generating a set of structured residuals. The residual evaluation is based on a numerical method based on an enhanced Newton-Raphson algorithm. The proposed method is suitable for water network systems because the non-linearities of the model make impossible to derive analytical residuals. Furthermore, the computed residuals are designed so that leaks are decoupled, which improves the localization of leaks with respect to other existing methods. Finally, the Hanoi water network benchmark is used to illustrate the results of the proposed approach
Leakage is the main source of water loss in water distribution networks (WDNs). Therefore, leak dete...
This is an open access article under the CC BY-NC-ND licenseThis paper describes an integrated model...
This paper presents a new method for leak localization in Water Distribution Networks that uses a mo...
peer reviewedIn this paper, a new model based approach to leakage localization in drinking water net...
In this paper, a new model based approach to leakage localization in drinking water networks is prop...
In this paper, a new model-based approach to leakage localization in drinking water distribution net...
In order to take into account the scarcity of the water resource and the increasing of the populatio...
“The final publication is available at Springer via http://dx.doi.org/10.1016/j.conengprac.2016.07.0...
This paper presents a novel approach to localize single and sequential leaks based on the lumped mod...
The performance and success of model-based leak localization methods applied to water distribution n...
AbstractThis paper describes an integrated model-based monitoring framework for leakage localization...
Water loss has increasingly become a major concern for water utilities. Loss reduction is an opportu...
Water scarcity is becoming an increasing problem worldwide, and an issue compounding the problem is ...
The worldwide growing demand of water supply requires a proper management of the available hydraulic...
The leak localization community is very active and the Research Centre for Supervision, Safety and A...
Leakage is the main source of water loss in water distribution networks (WDNs). Therefore, leak dete...
This is an open access article under the CC BY-NC-ND licenseThis paper describes an integrated model...
This paper presents a new method for leak localization in Water Distribution Networks that uses a mo...
peer reviewedIn this paper, a new model based approach to leakage localization in drinking water net...
In this paper, a new model based approach to leakage localization in drinking water networks is prop...
In this paper, a new model-based approach to leakage localization in drinking water distribution net...
In order to take into account the scarcity of the water resource and the increasing of the populatio...
“The final publication is available at Springer via http://dx.doi.org/10.1016/j.conengprac.2016.07.0...
This paper presents a novel approach to localize single and sequential leaks based on the lumped mod...
The performance and success of model-based leak localization methods applied to water distribution n...
AbstractThis paper describes an integrated model-based monitoring framework for leakage localization...
Water loss has increasingly become a major concern for water utilities. Loss reduction is an opportu...
Water scarcity is becoming an increasing problem worldwide, and an issue compounding the problem is ...
The worldwide growing demand of water supply requires a proper management of the available hydraulic...
The leak localization community is very active and the Research Centre for Supervision, Safety and A...
Leakage is the main source of water loss in water distribution networks (WDNs). Therefore, leak dete...
This is an open access article under the CC BY-NC-ND licenseThis paper describes an integrated model...
This paper presents a new method for leak localization in Water Distribution Networks that uses a mo...