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A sustainable multi-parametric sensors network topology for river water quality monitoring

机译:用于河流水质监测的可持续多参数传感器网络拓扑

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摘要

The deterioration of water quality due to natural and man-made hazards has affected the life on the Earth. Hence, water quality needs to be monitored regularly. The traditional approaches for monitoring are observed to be more expensive, time consuming with complex infrastructure and are less accurate. Therefore, there is a scope for improvement in monitoring approaches. For the purpose, the paper has presented multi-parametric sensors network topology (MPST). The topology has polyhedron infrastructure to observe the temporal and spatial variations like electrical conductivity, pH, temperature, chloride and dissolved oxygen; in shallow river water. Its main features are energy efficient, in-expensive infrastructure that requires less manpower, sustainable and can cope with varying currents of water. The MPST is tested at Sutlej river, Bassi, Ludhiana in India and the generated results are analyzed on various physical parameters. Further, it is compared with traditional sampling method for the accuracy. From the results, the topology is identified as an economical, scalable and convenient way for river water quality monitoring.
机译:由于自然和人为危害而导致的水质恶化影响了地球的生命。因此,需要定期监测水质。观察到传统的监视方法更加昂贵,复杂的基础结构耗时且准确性较低。因此,监测方法仍有改进的空间。为此,本文提出了多参数传感器网络拓扑(MPST)。该拓扑具有多面体基础设施,可观察时间和空间变化,例如电导率,pH,温度,氯化物和溶解氧;在浅水河里。它的主要特点是节能,廉价的基础设施,需要的人力更少,可持续且可以应对各种水流。 MPST在印度卢迪亚纳州Bassi的Sutlej河上进行了测试,并根据各种物理参数分析了生成的结果。此外,将其与传统采样方法进行比较以提高准确性。从结果可以看出,拓扑被认为是一种经济,可扩展且方便的河流水质监测方法。

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