首页> 外文会议>Geoscience and Remote Sensing Symposium, 1993. IGARSS '93. Better Understanding of Earth Environment., International >Radar backscatter/biomass saturation: observations and implications for global biomass assessment
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Radar backscatter/biomass saturation: observations and implications for global biomass assessment

机译:雷达后向散射/生物量饱和度:观测和对全球生物量评估的意义

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SAR sensors are being evaluated for application to global carbon modeling as a means of acquiring biomass data for vegetated ecosystems. While good correlations have been reported linking SAR backscatter to biomass, biomass saturation limits, or the point where backscatter no longer scales with biomass, have also been noted. This study examines two SAR and biomass data sets of forests with different canopy architectures for commonalties regarding backscatter/biomass saturation. The SAR data were collected using the same instrument and incidence angles. The effect of the saturation limits on the usefulness of SAR for making global biomass inventories was assessed by comparing the biomass limits to a global vegetation biomass map. The areal extent and total global biomass represented by ecosystems that exceed the biomass saturation level for each band are estimated.
机译:正在评估SAR传感器,以应用于全球碳建模,作为获取植被生态系统生物量数据的一种手段。尽管已经报道了将SAR反向散射与生物质相关联的良好相关性,但也注意到了生物质饱和度极限或反向散射不再随生物质结垢的点。这项研究检查了两个具有不同冠层结构的森林的SAR和生物量数据集,以了解有关反向散射/生物量饱和度的共性。 SAR数据是使用相同的仪器和入射角收集的。通过将生物量限制与全球植被生物量图进行比较,可以评估饱和度限制对合成孔径雷达用于编制全球生物量清单的有效性的影响。估算超出每个波段生物量饱和度水平的生态系统所代表的面积范围和总的全球生物量。

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