A critical review of sensor location methods for contamination detection in water distribution networks

IF 2 Q3 Environmental Science
S. Rathi, Rajesh Gupta
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引用次数: 13

Abstract

Water distribution networks (WDNs) are vulnerable to various types of contamination events that may have impacts on human health and the environment. Therefore, there is a growing need to design an effective monitoring system. Due to the cost of both placing and maintaining the sensors, their numbers must be limited. This constraint makes the sensor deployment locations crucial in water monitoring systems. Several methodologies have been suggested in the past two decades by different researchers for placement of sensors in WDNs. These methodologies differ in many ways depending on the number of objectives, solution methodology, concentration level of contaminant considered, type of simulation, and so on. In this paper, various methodologies have been broadly classified based on the number of performance objectives as single and multi-objective sensor location problems. Some of the features of these methodologies are also mentioned to help understand the advantages of a particular method over other methods. A critical review of literature is presented. Some of the issues on which a consensus is being developed amongst researchers are discussed and recommendations are made with a view to suggest future research needs for sensor network design of large WDNs.
供水管网污染检测的传感器定位方法综述
配水网络容易受到可能对人类健康和环境产生影响的各种污染事件的影响。因此,越来越需要设计一个有效的监测系统。由于放置和维护传感器的成本,它们的数量必须受到限制。这一限制使得传感器的部署位置在水监测系统中至关重要。在过去的二十年中,不同的研究人员提出了几种方法,用于在wdn中放置传感器。这些方法在许多方面有所不同,这取决于目标的数量、溶液方法、所考虑的污染物浓度水平、模拟的类型等等。在本文中,根据性能目标的数量,将各种方法大致分为单目标和多目标传感器定位问题。还提到了这些方法的一些特性,以帮助理解特定方法相对于其他方法的优点。对文献进行了批判性的回顾。讨论了研究人员正在形成共识的一些问题,并提出了建议,以期提出未来大型wdn传感器网络设计的研究需求。
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
18
审稿时长
>12 weeks
期刊介绍: The Water Quality Research Journal publishes peer-reviewed, scholarly articles on the following general subject areas: Impact of current and emerging contaminants on aquatic ecosystems Aquatic ecology (ecohydrology and ecohydraulics, invasive species, biodiversity, and aquatic species at risk) Conservation and protection of aquatic environments Responsible resource development and water quality (mining, forestry, hydropower, oil and gas) Drinking water, wastewater and stormwater treatment technologies and strategies Impacts and solutions of diffuse pollution (urban and agricultural run-off) on water quality Industrial water quality Used water: Reuse and resource recovery Groundwater quality (management, remediation, fracking, legacy contaminants) Assessment of surface and subsurface water quality Regulations, economics, strategies and policies related to water quality Social science issues in relation to water quality Water quality in remote areas Water quality in cold climates The Water Quality Research Journal is a quarterly publication. It is a forum for original research dealing with the aquatic environment, and should report new and significant findings that advance the understanding of the field. Critical review articles are especially encouraged.
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