Smart Urban Water Networks

This book presents the paper form of the Special Issue (SI) on Smart Urban Water Networks. The number and topics of the papers in the SI confirm the growing interest of operators and researchers for the new paradigm of smart networks, as part of the more general smart city. The SI showed that digita...

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Idioma:inglês
Publicado em: MDPI - Multidisciplinary Digital Publishing Institute 2022
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collection Directory of Open Access Books
description This book presents the paper form of the Special Issue (SI) on Smart Urban Water Networks. The number and topics of the papers in the SI confirm the growing interest of operators and researchers for the new paradigm of smart networks, as part of the more general smart city. The SI showed that digital information and communication technology (ICT), with the implementation of smart meters and other digital devices, can significantly improve the modelling and the management of urban water networks, contributing to a radical transformation of the traditional paradigm of water utilities. The paper collection in this SI includes different crucial topics such as the reliability, resilience, and performance of water networks, innovative demand management, and the novel challenge of real-time control and operation, along with their implications for cyber-security. The SI collected fourteen papers that provide a wide perspective of solutions, trends, and challenges in the contest of smart urban water networks. Some solutions have already been implemented in pilot sites (i.e., for water network partitioning, cyber-security, and water demand disaggregation and forecasting), while further investigations are required for other methods, e.g., the data-driven approaches for real time control. In all cases, a new deal between academia, industry, and governments must be embraced to start the new era of smart urban water systems.
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language eng
publishDate 2022
publishDateRange 2022
publishDateSort 2022
publisher MDPI - Multidisciplinary Digital Publishing Institute
publisherStr MDPI - Multidisciplinary Digital Publishing Institute
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spelling doab-20.500.12854ir-765802024-04-09T23:16:35Z Smart Urban Water Networks Creaco, Enrico Di Nardo, Armando Boccelli, Dominic L. Herrera, Manuel Cominola, Andrea Taormina, Riccardo Sitzenfrei, Robert hydraulic modelling pressure control valve pressure management remote real-time control stochastic consumption water distribution system fault identification hydraulic transient inverse transient analysis (ITA) water distribution network optimization approach water distribution monitoring optimal sensor placement water network partitioning topological centrality smart water system framework smartness cyber wellness leakage sensitivity uncertainty entropy multi-criteria decision-making DEMATEL clustering district metered area network sectorization smart city water quality monitoring Internet of Things wireless sensor networks water treatment plant data analytics nitrate nitrite water demand forecasting hybrid model error correction chaotic time series least square support vector machine cross-correlation data spatial aggregation finite population effect metering sample mean sampling design standard error stochastic analysis water demand peak factor water distribution networks comparative analysis hydraulic measure multi-criteria decision analysis (MCDA) reliability index water distribution network (WDN) smart stormwater machine learning cluster analysis data science flooding detection rainwater harvesting water trading dual reticulation decentralized water supply agent-based modeling urban water management urban water consumption water demand data water data accessibility data resolution smart meter smart water systems cyber–physical security cyber-security cyber–physical attacks n/a water distribution systems cyber-attack detection blind sources separation FastICA thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues This book presents the paper form of the Special Issue (SI) on Smart Urban Water Networks. The number and topics of the papers in the SI confirm the growing interest of operators and researchers for the new paradigm of smart networks, as part of the more general smart city. The SI showed that digital information and communication technology (ICT), with the implementation of smart meters and other digital devices, can significantly improve the modelling and the management of urban water networks, contributing to a radical transformation of the traditional paradigm of water utilities. The paper collection in this SI includes different crucial topics such as the reliability, resilience, and performance of water networks, innovative demand management, and the novel challenge of real-time control and operation, along with their implications for cyber-security. The SI collected fourteen papers that provide a wide perspective of solutions, trends, and challenges in the contest of smart urban water networks. Some solutions have already been implemented in pilot sites (i.e., for water network partitioning, cyber-security, and water demand disaggregation and forecasting), while further investigations are required for other methods, e.g., the data-driven approaches for real time control. In all cases, a new deal between academia, industry, and governments must be embraced to start the new era of smart urban water systems. 2022-01-11T13:36:07Z 2022-01-11T13:36:07Z 2021 book ONIX_20220111_9783036509785_315 9783036509785 9783036509792 https://directory.doabooks.org/handle/20.500.12854/76580 eng image/jpeg Attribution 4.0 International https://mdpi.com/books/pdfview/book/4025 https://mdpi.com/books/pdfview/book/4025 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-0365-0979-2 10.3390/books978-3-0365-0979-2 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783036509785 9783036509792 358 Basel, Switzerland open access
spellingShingle hydraulic modelling
pressure control valve
pressure management
remote real-time control
stochastic consumption
water distribution system
fault identification
hydraulic transient
inverse transient analysis (ITA)
water distribution network
optimization approach
water distribution monitoring
optimal sensor placement
water network partitioning
topological centrality
smart water system
framework
smartness
cyber wellness
leakage
sensitivity
uncertainty
entropy
multi-criteria decision-making
DEMATEL
clustering
district metered area
network sectorization
smart city
water quality monitoring
Internet of Things
wireless sensor networks
water treatment plant
data analytics
nitrate
nitrite
water demand forecasting
hybrid model
error correction
chaotic time series
least square support vector machine
cross-correlation
data spatial aggregation
finite population effect
metering
sample mean
sampling design
standard error
stochastic analysis
water demand peak factor
water distribution networks
comparative analysis
hydraulic measure
multi-criteria decision analysis (MCDA)
reliability index
water distribution network (WDN)
smart stormwater
machine learning
cluster analysis
data science
flooding detection
rainwater harvesting
water trading
dual reticulation
decentralized water supply
agent-based modeling
urban water management
urban water consumption
water demand data
water data accessibility
data resolution
smart meter
smart water systems
cyber–physical security
cyber-security
cyber–physical attacks
n/a
water distribution systems
cyber-attack detection
blind sources separation
FastICA
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
Smart Urban Water Networks
title Smart Urban Water Networks
title_full Smart Urban Water Networks
title_fullStr Smart Urban Water Networks
title_full_unstemmed Smart Urban Water Networks
title_short Smart Urban Water Networks
title_sort smart urban water networks
topic hydraulic modelling
pressure control valve
pressure management
remote real-time control
stochastic consumption
water distribution system
fault identification
hydraulic transient
inverse transient analysis (ITA)
water distribution network
optimization approach
water distribution monitoring
optimal sensor placement
water network partitioning
topological centrality
smart water system
framework
smartness
cyber wellness
leakage
sensitivity
uncertainty
entropy
multi-criteria decision-making
DEMATEL
clustering
district metered area
network sectorization
smart city
water quality monitoring
Internet of Things
wireless sensor networks
water treatment plant
data analytics
nitrate
nitrite
water demand forecasting
hybrid model
error correction
chaotic time series
least square support vector machine
cross-correlation
data spatial aggregation
finite population effect
metering
sample mean
sampling design
standard error
stochastic analysis
water demand peak factor
water distribution networks
comparative analysis
hydraulic measure
multi-criteria decision analysis (MCDA)
reliability index
water distribution network (WDN)
smart stormwater
machine learning
cluster analysis
data science
flooding detection
rainwater harvesting
water trading
dual reticulation
decentralized water supply
agent-based modeling
urban water management
urban water consumption
water demand data
water data accessibility
data resolution
smart meter
smart water systems
cyber–physical security
cyber-security
cyber–physical attacks
n/a
water distribution systems
cyber-attack detection
blind sources separation
FastICA
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
topic_facet hydraulic modelling
pressure control valve
pressure management
remote real-time control
stochastic consumption
water distribution system
fault identification
hydraulic transient
inverse transient analysis (ITA)
water distribution network
optimization approach
water distribution monitoring
optimal sensor placement
water network partitioning
topological centrality
smart water system
framework
smartness
cyber wellness
leakage
sensitivity
uncertainty
entropy
multi-criteria decision-making
DEMATEL
clustering
district metered area
network sectorization
smart city
water quality monitoring
Internet of Things
wireless sensor networks
water treatment plant
data analytics
nitrate
nitrite
water demand forecasting
hybrid model
error correction
chaotic time series
least square support vector machine
cross-correlation
data spatial aggregation
finite population effect
metering
sample mean
sampling design
standard error
stochastic analysis
water demand peak factor
water distribution networks
comparative analysis
hydraulic measure
multi-criteria decision analysis (MCDA)
reliability index
water distribution network (WDN)
smart stormwater
machine learning
cluster analysis
data science
flooding detection
rainwater harvesting
water trading
dual reticulation
decentralized water supply
agent-based modeling
urban water management
urban water consumption
water demand data
water data accessibility
data resolution
smart meter
smart water systems
cyber–physical security
cyber-security
cyber–physical attacks
n/a
water distribution systems
cyber-attack detection
blind sources separation
FastICA
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
url ONIX_20220111_9783036509785_315