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Digital Transformation in the Water Distribution System based on the Digital Twins Concept
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Digital Twins have emerged as a disruptive technology with great potential; they can enhance WDS by offering real-time monitoring, predictive maintenance, and optimization capabilities. This paper describes the development of a state-of-the-art DT platform for WDS, introducing advanced technologies such as the Internet of Things, Artificial Intelligence, and Machine Learning models. This paper provides insight into the architecture of the proposed platform-CAUCCES-that, informed by both historical and meteorological data, effectively deploys AI/ML models like LSTM networks, Prophet, LightGBM, and XGBoost in trying to predict water consumption patterns. Furthermore, we delve into how optimization in the maintenance of WDS can be achieved by formulating a Constraint Programming problem for scheduling, hence minimizing the operational cost efficiently with reduced environmental impacts. It also focuses on cybersecurity and protection to ensure the integrity and reliability of the DT platform. In this view, the system will contribute to improvements in decision-making capabilities, operational efficiency, and system reliability, with reassurance being drawn from the important role it can play toward sustainable management of water resources.
Forward citations
Cited by 3 Pith papers
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Graph Attention Networks with Physical Constraints for Anomaly Detection
A graph attention network that feeds normalized mass- and energy-balance violations into a spatio-temporal model achieves F1=0.979 on BATADAL water-network attack detection.
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The Dark Side of Digital Twins: Adversarial Attacks on AI-Driven Water Forecasting
A digital twin water forecasting LSTM is shown to be vulnerable to FGSM and PGD attacks, and Learning Automata variants that adapt epsilon push MAPE above 35%, but no detection experiment supports the stealth claim.
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Smart Water Security with AI and Blockchain-Enhanced Digital Twins
An integrated LoRaWAN, AI anomaly-detection, and private-blockchain digital-twin platform for rural water systems reports over 80 TPS, but its own latency table shows up to 3.5 seconds.
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