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VERSATILE MOBILE AND STATIONARY LOW-COST APPROACHES FOR HYDROLOGICAL MEASUREMENTS

机译:水文测量的多功能移动和固定低成本方法

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In the last decades, an increase in the number of extreme precipitation events has been observed, which leads to increasing risks for flash floods and landslides. Thereby, conventional gauging stations are indispensable for monitoring and prediction. However, they are expensive in construction, management, and maintenance. Thus, density of observation networks is rather low, leading to insufficient spatio-temporal resolution to capture hydrological extreme events that occur with short response times especially in small-scale catchments. Smaller creeks and rivers require permanent observation, as well, to allow for a better understanding of the underlying processes and to enhance forecasting reliability. Today’s smartphones with inbuilt cameras, positioning sensors and powerful processing units may serve as wide-spread measurement devices for event-based water gauging during floods. With the aid of volunteered geographic information (VGI), the hydrological network of water gauges can be highly densified in its spatial and temporal domain even for currently unobserved catchments. Furthermore, stationary low-cost solutions based on Raspberry Pi imaging systems are versatile for permanent monitoring of hydrological parameters. Both complementary systems, i.e. smartphone and Raspberry Pi camera, share the same methodology to extract water levels automatically, which is explained in the paper in detail. The annotation of 3D reference data by 2D image measurements is addressed depending on camera setup and river section to be monitored. Accuracies for water stage measurements are in range of several millimetres up to few centimetres.
机译:在过去的几十年中,观测到极端降水事件的数量有所增加,这导致山洪和滑坡的风险增加。因此,常规的测量站对于监视和预测是必不可少的。但是,它们在构造,管理和维护方面很昂贵。因此,观测网络的密度相当低,导致时空分辨率不足以捕获响应时间短而发生的水文极端事件,特别是在小规模流域。较小的小河和河流也需要进行永久观察,以便更好地了解基本过程并增强预测的可靠性。当今的带有内置摄像头,定位传感器和强大处理单元的智能手机可以用作洪水期间基于事件的水位测量的广泛测量设备。借助自愿的地理信息(VGI),即使对于当前未观测到的流域,水位计的水文网络在其时空范围内也可以得到高度致密化。此外,基于Raspberry Pi成像系统的固定式低成本解决方案可用于永久监测水文参数。两种互补系统,即智能手机和Raspberry Pi相机,都具有相同的自动提取水位的方法,本文对此进行了详细说明。根据2D图像测量对3D参考数据的注释取决于摄像机设置和要监视的河段。水位测量的精度范围在几毫米到几厘米之间。

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