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A Water Quality Research Platform for the Near-real-time Buoy Sensor Data

机译:近实时浮标传感器数据的水质研究平台

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Maintaining environmental sustainability relies on continuously monitoring environmental conditions. Water is an environmental component essential to the survival of all living organisms; hence, to prevent contamination and ensure proper water treatment, persistent observations and measurements of water quality are crucial. Traditionally, the procedure for testing the quality of water involved traveling to designated testing sites, manually collecting surface samples, transporting said samples to a laboratory for analysis, analyzing chemicals and microbial contaminants, and publishing the findings with the community. The technological advances in wireless sensor networks bring forth the opportunity for remote measurement and monitoring of water samples. Not only is the presence of the scientist no longer mandatory on the testing site, but the data can also be automatically collected, visualized, monitored, and shared through sensor recordings. These transitions exhibit a much fine-grained level of spatio-temporal information collection and allow for more comprehensive and long-term studies. Three research buoys, designed to be deployed in both shallow freshwater ecosystems and near-shore marine environments, were launched in different locations of South Florida to tackle complex challenges of environmental contamination. The research presented here designs and deploys a water quality monitoring platform for allowing the scientists to analyze better the near-real-time data collected by the buoys and generate insights. We further demonstrate two engaging near-real-time visualization methods developed to disseminate data trends and findings to a wide range of audiences from diverse backgrounds.
机译:维持环境可持续性依赖于不断监测环境状况。水是所有生物生存所必需的环境成分;因此,为了防止污染并确保适当的水处理,持续观察和测量水质至关重要。传统上,测试水质的过程包括前往指定的测试地点,手动收集地表样品,将所述样品运送到实验室进行分析,分析化学物质和微生物污染物,以及向社区公布调查结果。无线传感器网络的技术进步为水样的远程测量和监控带来了机遇。不仅不再必须在测试现场派驻科学家,而且还可以通过传感器记录自动收集,可视化,监视和共享数据。这些过渡显示出时空信息收集的细粒度水平,并允许进行更全面和长期的研究。在南佛罗里达州的不同地点发射了三个旨在在浅海浅水生态系统和近岸海洋环境中部署的研究浮标,以应对复杂的环境污染挑战。这里介绍的研究设计并部署了水质监测平台,以使科学家们能够更好地分析浮标收集的近实时数据并产生见解。我们进一步展示了两种引人入胜的近实时可视化方法,这些方法旨在向来自不同背景的广泛受众传播数据趋势和发现。

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