结合短波PolInSAR TanDEM-X的高精度DEM森林高度估算策略

Hongbin Luo, Wanqiu Zhang, C. Yue, Silu Chen
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摘要

本文的目的是探讨结合地形数据(DEM)和TanDEM-X的森林高度估计策略,并比较传统随机体对地(RVoG)三阶段算法中体散射复相干选择对森林高度估计的影响。基于TanDEM-X偏振干涉合成孔径雷达(PolInSAR)数据、TanDEM-DEM数据和42个现场实测数据,设计了4种实验策略进行对比。研究结果表明,在RVoG模型中,(1)参考地面相位选择体散射复相干性对确定森林高度具有更高的精度;(2)直接使用DEM作为地面相位信息而不依赖模型求解,可以获得比单独使用TanDEM-X更精确的森林高度;(3)使用DEM作为相干性信息在所有方案中获得最高的估计精度。虽然本研究中森林高度估计结果差异不显著,但仍然证明了高精度DEM与短波PolInSAR相结合的森林高度估计策略不仅可以提高森林高度估计精度,还可以简化RVoG模型的求解过程,为基于星载PolInSAR的全球森林参数估计和生态系统探测提供重要参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strategies for Forest Height Estimation by High-Precision DEM Combined with Short-Wavelength PolInSAR TanDEM-X
The purpose of this article is to explore forest height estimation strategies using topographic data (DEM) combined with TanDEM-X while comparing the effect of volume scattering complex coherence selection on forest height estimation in the traditional random volume over ground (RVoG) three-stage algorithm. In this study, four experimental strategies were designed for comparison based on TanDEM-X polarized interferometric synthetic aperture radar (PolInSAR) data, TanDEM-DEM, and 42 field-measured data. Our results show that in the RVoG model, (1) a reference ground phase to select the volume scattering complex coherence provides greater accuracy in determining forest height, (2) forest height estimation can be achieved by directly using DEM as ground phase information without relying on model solving and obtaining a more accurate forest height than TanDEM-X alone, and (3) the highest estimation accuracy is obtained by using DEM as coherence information among all schemes. Although the difference in forest height estimation results is not significant in this study, it still proves that the forest height estimation strategy of high-precision DEM combined with short-wavelength PolInSAR can not only improve the forest height estimation accuracy but also simplify the solving process of the RVoG model, which is an important reference for global forest parameter estimation and ecosystem detection based on spaceborne PolInSAR.
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