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Generation of Large-Scale Moderate-Resolution Forest Height Mosaic With Spaceborne Repeat-Pass SAR Interferometry and Lidar

机译:星载重复通过SAR干涉法和激光雷达生成大规模中等分辨率森林高度马赛克

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摘要

This paper provides an overview of the scattering model, inversion approach, and validation of the application results for creating large-scale moderate-resolution (hectare-level) mosaics of forest height through using spaceborne repeat-pass SAR interferometry and lidar. By incorporating several improvements to the forest height inversion and mosaicking approach, the height estimation accuracy along with the robustness of this approach have been considerably enhanced from its originally reported accuracy of RMSE of 3-4 m at a 20-hectare aggregated pixel size to RMSE of 3-4 m on the order of 3-6 hectares. Furthermore, practical data processing schemes are provided in detail. Extensive validation results are demonstrated which include: 1) a forest height mosaic (total area of 11.6 million hectares) is generated for the U.S. states of Maine and New Hampshire using Japanese Aerospace Exploration Agency's (JAXA) ALOS-1 InSAR correlation data and a small airborne lidar strip (44 000 hectares); 2) the mosaic height estimates are further compared with the available airborne lidar data and field measurements over both flat and mountainous areas; and 3) feasibility of using modern repeat-pass InSAR satellites with short repeat interval is also examined by using JAXA's ALOS-2 data. This simple and efficient approach is a potential observational prototype with much smaller error budget for the future spaceborne repeat-pass L-band InSAR systems with small spatial baseline and moderate/large temporal baseline (such as NISAR) in combination with lidar (such as GEDI) on the application of large-scale forest height/biomass mapping. It also serves as a complementary tool to the spaceborne single-pass InSAR systems using InSAR/PolInSAR methods when full-pol data are not available and/or when the underlying topography slope causes problems for these approaches.
机译:本文概述了散射模型,反演方法以及对通过使用星载重复通过SAR干涉测量法和激光雷达创建森林高度的中分辨率(公顷级)马赛克的应用结果的验证。通过结合对森林高度反演和镶嵌方法的若干改进,高度估计的准确性以及该方法的鲁棒性已从最初报道的在20公顷聚合像素大小下的3-4 m的RMSE精度提高到RMSE有了很大提高。 3-4 m的面积约为3-6公顷。此外,详细提供了实用的数据处理方案。证实了广泛的验证结果,其中包括:1)使用日本航空航天局(JAXA)的ALOS-1 InSAR相关数据和一小部分数据,为美国缅因州和新罕布什尔州生成了森林高度马赛克(总面积为1,160万公顷)。机载激光雷达带(44 000公顷); 2)进一步将镶嵌高度估计值与可用的机载激光雷达数据以及在平坦和山区的野外测量结果进行比较; 3)还通过使用JAXA的ALOS-2数据,研究了使用短重复间隔的现代重复通过InSAR卫星的可行性。这种简单有效的方法是一种潜在的观测原型,对于未来的星空重复通行L波段InSAR系统(具有较小的空间基线和中等/较大的时间基线(例如NISAR))与激光雷达(例如GEDI)相结合,其误差预算要小得多。 )在大型森林高度/生物量测绘中的应用。当没有完整的pol数据和/或当基础地形坡度导致这些方法出现问题时,它还可以作为使用InSAR / PolInSAR方法的星载单程InSAR系统的补充工具。

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