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Low-Cost, Low-Energy, Wireless Hydrological Monitoring Platform: Design, Deployment, and Evaluation

机译:低成本,低能量,无线水文监控平台:设计,部署和评估

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Climate change has increasingly been considered responsible for irregular weather patterns leading to many environmental hazards and catastrophes. Coping with these conditions and providing effective solutions require monitoring and collecting data of various hydrological parameters and events in high spatial and temporal resolutions, which is generally limited by the cost and energy requirements of the monitoring devices. In this work, we push the limit of the current low-cost data acquisition capabilities by developing the HydroMon3: a hydrological monitoring platform that collects, stores, and transmits high temporal resolution data reliably and accurately, and capable of interfacing different types of sensors. The modular design is driven by utilizing the recent burst in commercially available IoT-related electronics modules to minimize the cost and maximize flexibility, while applying various hardware and software techniques to ensure reliability and energy performance. Stream stage and tipping bucket monitoring units based on the HydroMon3 platform were deployed to more than 20 locations in two different watersheds, and their performance over a 6-month season was evaluated. Collected data for a number of storms provided important insights for linking hydrological events and showed substantial variability in the monitored parameters both spatially and temporally, which were compared with local data records and confirmed that conventional hydrological data acquisition methods are under representative of the actual events. Field-proven results demonstrate the units’ ability to maintain autonomous operation from several months for the stream stage monitors to years for the rainfall gauges using of-the-shelf AA batteries.
机译:气候变化越来越多地被认为是不规则的天气模式,导致许多环境危害和灾难。应对这些条件并提供有效的解决方案需要监测和收集高空间和时间分辨率的各种水文参数和事件的数据,这通常受监控设备的成本和能量要求的限制。在这项工作中,我们通过开发HydromOn3:收集,存储和准确地传递高时间分辨率数据的水文监测平台,并能够接地不同类型的传感器来推动当前低成本数据采集能力的极限。通过利用最近在市售的IOT相关电子模块中的突发来驱动模块化设计,以最大限度地降低成本并最大限度地提高灵活性,同时应用各种硬件和软件技术以确保可靠性和能量性能。基于HydromOn3平台的流阶段和小型铲斗监测单元部署到两种不同的流域的20多个地点,评估了它们在6个月内的表现。许多风暴的收集数据为链接水文事件提供了重要的见解,并在空间和时间上显示了监测参数的显着变化,与本地数据记录进行比较,并确认常规的水文数据采集方法是在实际事件的代表下进行的。现场证明的结果表明,单位的能力在使用货架AA电池的降雨量表中为流阶段监视器维持自主操作的能力。

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