Laboratory of Monitoring and Environmental Modelling for the Sustainable Development (LaMMA), 50019 Sesto F.no, FI, Italy.
Institute for the Bioeconony (IBE), National Research Council (CNR), 50019 Sesto F.no, FI, Italy.
Sensors (Basel). 2022 Sep 2;22(17):6638. doi: 10.3390/s22176638.
In situ measurements of precipitation are typically obtained by tipping bucket or weighing rain gauges or by disdrometers using different measurement principles. One of the most critical aspects of their operational use is the calibration, which requires the characterization of instrument responses both in laboratory and in real conditions. Another important issue with in situ measurements is the coverage. Dense networks are desirable, but the installation and maintenance costs can be unaffordable with most of the commercial conventional devices. This work presents the development of a prototype of an impact rain gauge based on a very low-cost piezoelectric sensor. The sensor was developed by assembling off-the-shelf and reused components following an easy prototyping approach; the calibration of the relationship between the different properties of the voltage signal, as sampled by the rain drop impact, and rainfall intensity was established using machine-learning methods. The comparison with 1-minute rainfall obtained by a co-located commercial disdrometer highlights the fairly good performance of the low-cost sensor in monitoring and characterizing rainfall events.
原位测量降水通常通过翻斗或称重雨量计或使用不同测量原理的雨滴谱仪来获得。其操作使用的一个最关键方面是校准,这需要在实验室和实际条件下对仪器响应进行特征描述。原位测量的另一个重要问题是覆盖范围。密集的网络是理想的,但大多数商业常规设备的安装和维护成本可能无法承受。本工作介绍了一种基于非常低成本的压电传感器的冲击式雨量计原型的开发。该传感器是通过组装现成的和再利用的组件,按照简单的原型制作方法开发的;使用机器学习方法建立了雨滴冲击采样的电压信号不同特性与降雨量之间关系的校准。与位于同一地点的商业雨滴谱仪获得的 1 分钟降雨量的比较突出了低成本传感器在监测和表征降雨事件方面的相当良好的性能。