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Wetland monitoring with Global Navigation Satellite System reflectometry

机译:利用全球导航卫星系统反射仪监测湿地

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Information about wetland dynamics remains a major missing gap in characterizing, understanding, and projecting changes in atmospheric methane and terrestrial water storage. A review of current satellite methods to delineate and monitor wetland change shows some recent advances, but much improved sensing technologies are still needed for wetland mapping, not only to provide more accurate global inventories but also to examine changes spanning multiple decades. Global Navigation Satellite Systems Reflectometry (GNSS?¢????R) signatures from aircraft over the Ebro River Delta in Spain and satellite measurements over the Mississippi River and adjacent watersheds demonstrate that inundated wetlands can be identified under different vegetation conditions including a dense rice canopy and a thick forest with tall trees, where optical sensors and monostatic radars provide limited capabilities. Advantages as well as constraints of GNSS?¢????R are presented, and the synergy with various satellite observations are considered to achieve a breakthrough capability for multidecadal wetland dynamics monitoring with frequent global coverage at multiple spatial and temporal scales.
机译:在表征,理解和预测大气中甲烷和陆地储水量变化方面,有关湿地动态的信息仍然是一个主要的缺失缺口。对描述和监测湿地变化的现有卫星方法的回顾显示了最近的一些进展,但是湿地制图仍需要大大改进的传感技术,不仅要提供更准确的全球清单,而且要检查几十年来的变化。西班牙埃布罗河三角洲上空飞机的全球导航卫星系统反射法(GNSS)签名以及密西西比河及其邻近流域的卫星测量表明,可以在包括茂密水稻在内的不同植被条件下识别淹没的湿地林冠和茂密的树林,高大的树木,光学传感器和单基地雷达提供的功能有限。介绍了GNSS?R?R的优点和局限性,并认为与各种卫星观测的协同作用可实现突破性的多年代湿地动态监测能力,并在多个时空尺度上频繁覆盖全球。

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