Intelligent Water Distribution Networks Using IoT

  • Authors

    • Dr. Rebecca Green Associate Professor, Arizona State University, USA. Author

    DOI:

    https://doi.org/10.67228/30715628/IJMIET-2020PI8A1T

    Published 01-03-2020

  • Intelligent Water Networks, Internet of Things, Smart Water Management, Leakage Detection, Smart Cities, Wireless Sensor Networks

    Issue

    Section

    Articles

    How to Cite

    [1]
    R. Green, “Intelligent Water Distribution Networks Using IoT”, ijmiet, vol. 3, no. 1, pp. 01–13, Jan. 2020, doi: 10.67228/30715628/IJMIET-2020PI8A1T.
  • Abstract

    Water distribution networks are a key infrastructure that has a direct influence on the health of the population, economic growth and environmental sustainability. The weaknesses associated with traditional water distribution systems are water leakage, absence of real time monitoring, delayed fault detection, and excessive cost of operation. Urbanization, climate change and water shortage have further escalated the intensity of demand of smart and flexible water management solutions like never before. With the introduction of the Internet of Things (IoT) along with the developments in sensing technologies, wireless networks, data analytics, and cloud computing, new opportunities to transform traditional water distribution networks into the smart, self-observing, and predictive one have arisen. The provided paper is a profound study of the design, implementation, and performance appraisal of Intelligent Water Distribution Networks (IWDNs) based on the IoT technologies. The suggested system is a combination of distributed sensor nodes, smart meters, communication gateways, cloud based analytics platforms and decision-support algorithms that would include real-time monitoring, anomaly detection, leakage detection, pressure optimization and predictive maintenance. The architecture based on the IoT enables the uninterrupted data retrieval of vital hydraulic measurements: the flow rate, pressure, water quality variables (pH, turbidity, temperature), and consumption patterns. Machine learning and statistical models are used to process these data streams and identify abnormal behaviors, predict demand, and optimization of operational strategies. The framework suggested is scalable, interoperable, energy efficient, and cybersecurity oriented. Multi-layer architecture is used which includes perception, communication, data processing and application layers. The analysis of historical and real-time data is carried out using the methods of advanced algorithms including regression models, clustering techniques and neural networks. The intelligent system has been proven to save a number of non-revenue water and result in time savings with regard to the response of faults as well as overall reliability of the system as proved by performance evaluation. The effectiveness of the proposed solution that applies the IoT system to water distribution in terms of sustainable and resilient water management is reflected through comparative analysis with the traditional water distribution systems. The paper adds a systems approach to smart water distribution systems with the hardware, software, communication application, and data intelligence integrated as one entity. The results of the study emphasize how the IoT-based water infrastructure could help humanity overcome the issue of water and be utilized in the programs of smart cities.

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