Hydrology and Quantitative Water Management Group, Department of Environmental Sciences, Wageningen University, 6708 PB Wageningen, The Netherlands.
Proc Natl Acad Sci U S A. 2013 Feb 19;110(8):2741-5. doi: 10.1073/pnas.1217961110. Epub 2013 Feb 4.
Accurate and timely surface precipitation measurements are crucial for water resources management, agriculture, weather prediction, climate research, as well as ground validation of satellite-based precipitation estimates. However, the majority of the land surface of the earth lacks such data, and in many parts of the world the density of surface precipitation gauging networks is even rapidly declining. This development can potentially be counteracted by using received signal level data from the enormous number of microwave links used worldwide in commercial cellular communication networks. Along such links, radio signals propagate from a transmitting antenna at one base station to a receiving antenna at another base station. Rain-induced attenuation and, subsequently, path-averaged rainfall intensity can be retrieved from the signal's attenuation between transmitter and receiver. Here, we show how one such a network can be used to retrieve the space-time dynamics of rainfall for an entire country (The Netherlands, ∼35,500 km(2)), based on an unprecedented number of links (∼2,400) and a rainfall retrieval algorithm that can be applied in real time. This demonstrates the potential of such networks for real-time rainfall monitoring, in particular in those parts of the world where networks of dedicated ground-based rainfall sensors are often virtually absent.
准确和及时的地表降水测量对于水资源管理、农业、天气预报、气候研究以及卫星降水估计的地面验证至关重要。然而,地球上大部分陆地表面缺乏此类数据,在世界许多地区,地表降水测量网络的密度甚至正在迅速下降。这种发展可以通过利用全球商业蜂窝通信网络中使用的大量微波链路的接收信号电平数据来抵消。沿着这些链路,无线电信号从一个基站的发射天线传播到另一个基站的接收天线。可以从发射器和接收器之间的信号衰减中检索到雨引起的衰减和随后的路径平均降雨强度。在这里,我们展示了如何基于前所未有的链路数量(约 2400 条)和可实时应用的降雨检索算法,使用这样的一个网络来检索整个国家(荷兰,约 35500 平方公里)的降雨时空动态。这表明此类网络具有实时降雨监测的潜力,特别是在那些通常几乎没有专用地面传感器网络的世界地区。