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Retrieval of tropical forest biomass information from ALOS PALSAR data

机译:从ALOS PALSAR数据中获取热带森林生物量信息

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摘要

Advanced Land Observing Satellite Phased Array L-band Synthetic Aperture Radar (ALOS PALSAR) data from different observation modes were analysed to determine (1) which observation mode most accurately retrieves tropical forest biomass information and (2) whether different modes, when considered together, yield improved results in comparison to identical data-sets analysed independently. We performed regression analysis to estimate above-ground forest biomass using PALSAR backscatter data for natural and planted forests in south-eastern Bangladesh. The coefficient of determination (r2) was lower or equal to 0.499 (n = 70) when PALSAR data from different observation modes were separately considered, but increased sharply when one class (rubber) is dropped and average backscatter of fine beam single (FBS) and polrimetric (PLR) modes are used in the analysis. The results presented in this article are useful for both regional and global forest biomass inventories and fixing acquisition modes for planned L-band SAR missions.
机译:分析了来自不同观测模式的高级陆地观测卫星相控阵L波段合成孔径雷达(ALOS PALSAR)数据,以确定(1)哪种观测模式最准确地检索了热带森林生物量信息,以及(2)是否将不同模式综合考虑,与独立分析的相同数据集相比,可以得到更好的结果。我们进行了回归分析,使用孟加拉国东南部天然和人工林的PALSAR反向散射数据估算地上森林生物量。当分别考虑来自不同观察模式的PALSAR数据时,确定系数(r2)小于或等于0.499(n = 70),但是当丢弃一类(橡胶)和细光束单(FBS)的平均反向散射时,确定系数(r2)急剧增加。在分析中使用了极化和极化(PLR)模式。本文介绍的结果对于区域和全球森林生物量清单以及为计划的L波段SAR任务确定获取模式都非常有用。

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