Smart City Gnosys

Smart city article details

Title Designing Community-Based Intelligent Systems For Water Infrastructure Resilience
ID_Doc 19082
Authors Venkatasubramanian N.; Davis C.A.; Eguchi R.T.
Year 2020
Published Proceedings of the 3rd ACM SIGSPATIAL International Workshop on Advances in Resilient and Intelligent Cities, ARIC 2020
DOI http://dx.doi.org/10.1145/3423455.3430318
Abstract In this paper, we discuss how data-driven approaches using emerging IoT and machine learning based analytics can revolutionize the resilience and efficiency of urban water systems. Key challenges in creating a next generation water infrastructure includes issues of how and where to place instruments to gather a wide variety of information useful for improving operational efficiencies and for damage detection after major disasters. We discuss how an understanding of deployed infrastructure in diverse geographies and the dynamics of interconnected systems can help design more effective placement of technology solutions. We showcase recent work illustrating how knowledge of network structures and their behavior can help to more effectively instrument and gather operational data and how AI-based approaches utilizing geospatial data more effectively can help to maintain real-time awareness of system states which allows decision makers to more effectively monitor and control their systems. © 2020 Owner/Author.
Author Keywords cyberphysical water systems; extreme events; geospatial information; resilience


Similar Articles


Id Similarity Authors Title Published
10905 View0.908Bui M.T.; Yáñez-Godoy H.; Elachachi S.M.Assessment Of The Implications And Challenges Of Using Artificial Intelligence For Urban Water Networks In The Context Of Climate Change When Building Future Resilient And Smart InfrastructuresJournal of Pipeline Systems Engineering and Practice, 16, 1 (2025)
25761 View0.892Zyoud S.Exploring The Promising Role Of Internet Of Things In Urban Water Systems: A Comprehensive Global Analysis Of Insights, Trends, And Research PrioritiesDiscover Internet of Things, 5, 1.0 (2025)
57775 View0.88Allen-Dumas M.R.; Xu H.; Kurte K.R.; Rastogi D.Toward Urban Water Security: Broadening The Use Of Machine Learning Methods For Mitigating Urban Water HazardsFrontiers in Water, 2 (2021)
31781 View0.869Liao Y.; Liao W.; Wu D.; Zhang C.; Xu J.; Majumdar S.Inspired Applications Of Artificial Intelligence In Disaster-Resilient Regional Construction For Climate RiskUrban Sustainability, Part F3945 (2024)
24069 View0.864Nageye A.Y.; Jimale A.D.; Abdullahi M.O.; Addow M.A.Enhancing Urban Resilience: An Iot-Based Smart Drainage System For Flood Management In Mogadishu, SomaliaDiscover Applied Sciences, 7, 6 (2025)
51911 View0.859Mezni H.; Driss M.; Boulila W.; Atitallah S.B.; Sellami M.; Alharbi N.Smartwater: A Service-Oriented And Sensor Cloud-Based Framework For Smart Monitoring Of Water EnvironmentsRemote Sensing, 14, 4 (2022)
33885 View0.859O'Toole S.; Sewell C.; Mehrpouyan H.Iot Security And Safety Testing Toolkits For Water Distribution Systems2021 8th International Conference on Internet of Things: Systems, Management and Security, IOTSMS 2021 (2021)
24199 View0.859Zehouani N.; Ababou M.; Faquir S.; Rabiai S.Environmental Ai For Resilient And Sustainable Urban Infrastructures: Rethinking Smart City TransformationSustainable Civil Infrastructures (2025)
49296 View0.858Pathak S.; Negi N.; Dadhich P.Smart Cities And Blue-Green Infrastructure: The Role Of Machine Learning In Sustainable SolutionsIntegrating Blue-Green Infrastructure Into Urban Development (2024)
35135 View0.856Pandey A.; Goyal M.Leveraging Technology For Climate Resilience In Urban AreasRevolutionizing Urban Development and Governance With Emerging Technologies (2025)