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Applied fuzzy heuristics for automation of hygienic drinking water supply system using wireless sensor networks

机译:应用无线传感器网络卫生饮用水系统自动化模糊启发式

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About 20% of communicable infectious disease is spread by drinking contaminatedwater. Hence, a real-time in-pipe drinkingwater quality system using sensor networks is proposed. The proposed prototype Drinking Water Quality Monitoring System (DWQMS) checks for parameters such as pH, temperature, turbidity, oxidation-reduction potential, conductivity, and dissolved oxygen in the drinking water supplied through pipes by the municipality in a fast and efficient manner. In the proposed work, a sensor network that is powered by solar energy is deployed inside the water pipelines to improve the network connectivity and enhance the network lifetime. The prototype designed uses an Energy AwareMultipath Routing Protocol (EAMRP) to prevent thewater flowwhen contamination is detected in a particular pipeline region without interrupting the supply in non-contaminated regions. The key ingredients of the proposed protocol are an energy-efficient algorithm; maximizing the data correlation among sensors; shortest path routing and fast data transmission algorithm to report the water quality to the users quickly; event detection algorithms to assess the water contamination risks in pipes; and fuzzy rule descriptors to predict the water quality as desirable/acceptable/rejected for drinking with better accuracy. The simulation results show that the designed DWQMS acts as an early warning system and outperforms in terms of energy efficiency, detects the contaminants with better accuracy, increases network lifetime, and better estimates the water quality parameters. The proposed algorithms are tested in a small test bed of wireless sensor networks with 20 nodes that monitor the drinking water quality distributed in water distribution mains, which alert the consumers/houses in the water-contaminated regions.
机译:大约20%的传染病通过饮用污染水蔓延。因此,提出了使用传感器网络的实时管饮水质量系统。所提出的原型饮用水质量监测系统(DWQMS)检查饮用水中的pH,温度,浊度,氧化降低电位,导电性和溶解氧,以快速有效地提供通过管道供应的饮用水。在建议的工作中,由太阳能供电的传感器网络部署在水管内,以提高网络连接,并增强网络寿命。原型设计使用能量Awaremultipath路由协议(EADRP)来防止在特定管道区域中检测到污染的水流量,而不会在非受污染区域中中断供应。所提出的协议的关键成分是节能算法;最大化传感器之间的数据相关;最短路径路由和快速数据传输算法快速向用户报告水质;事件检测算法评估管道中的水污染风险;和模糊的规则描述符以更好的准确度预测可接受/可接受/拒绝的水质。仿真结果表明,设计的DWQMS作为预警系统,在能效方面采用优势,以更好的准确度检测污染物,增加网络寿命,更好地估计水质参数。所提出的算法在无线传感器网络的小型测试床上进行测试,其中20个节点监控分布在水分配电源中的饮用水质量,这提醒消费者/房屋在水污染的地区。

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