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The Global Rain Forest Mapping Project JERS-1 radar mosaic of tropical Africa: development and product characterization aspects

机译:非洲热带雨林全球雨林制图项目JERS-1雷达镶嵌图:开发和产品表征方面

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The Global Rain Forest Mapping Project (GRFM) is an international collaborative effort initiated and managed by the National Space Development Agency of Japan (NASDA). The main goal of the project is to produce a high resolution wall-to-wall map of the entire tropical rain forest domain in four continents using the L-band SAR onboard the JERS-1 spacecraft. The processing phase, which entails the generation of wide area radar mosaics from the raw SAR data, was split according to the geographic area. In this paper, the focus is on the part related to Africa. The GRFM project's goal calls for the coverage of a continental scale area of several million km/sup 2/ using a sensor with the resolution of tens of meters. In the case of the African continent, this entails the assemblage of some 3900 high resolution SAR scenes into a bitemporal mosaic at 100 m pixel spacing and with known geometric accuracy. While this fact opens up an entire new perspective for vegetation mapping in the tropics, it presents a number of technical challenge. The authors report on the solutions adopted in the GRFM Africa mosaic development and discuss some quantitative and qualitative aspects related to the characterization and validation of the GRFM products. In particular, the mosaic geolocation and its validation are discussed in detail. Indeed, the internal geometric consistency (subpixel accuracy in the coregistration of the two dates), and the absolute geolocation (residual mean squared error of 240 m with respect to ground control points) are key features of the GRFM Africa mosaic.
机译:全球雨林制图项目(GRFM)是由日本国家太空开发署(NASDA)发起和管理的一项国际合作活动。该项目的主要目标是使用JERS-1航天器上的L波段SAR制作四大洲整个热带雨林领域的高分辨率墙到墙地图。根据地理区域划分了处理阶段,该阶段需要根据原始SAR数据生成广域雷达镶嵌图。在本文中,重点是与非洲有关的部分。 GRFM项目的目标要求使用分辨率为数十米的传感器覆盖几百万公里/ sup 2 /的大陆规模区域。就非洲大陆而言,这需要将约3900个高分辨率SAR场景组合成一个以100 m像素间隔且具有已知几何精度的时空马赛克。尽管这一事实为热带地区的植被测绘开辟了一个全新的视角,但它提出了许多技术挑战。作者报告了在GRFM非洲马赛克开发中采用的解决方案,并讨论了与GRFM产品的表征和验证有关的一些定量和定性方面。特别是,详细讨论了镶嵌地理定位及其验证。的确,内部几何一致性(两个日期的一致性中的亚像素精度)和绝对地理位置(相对于地面控制点的残差均方误差为240 m)是GRFM Africa马赛克的关键特征。

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