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TanDEM-X digital surface models in boreal forest above-ground biomass change detection

机译:TanDEM-X数字表面模型在北方森林地上生物量变化检测中的应用

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Satellite images provide spatially explicit information on forest change covering wide areas. In this study, bistatic TanDEM-X (TDX) synthetic aperture radar (SAR) satellite data were used to derive digital surface models (DSMs) of forest areas using SAR interferometry (InSAR). The capability of change features derived from bitemporal InSAR DSMs to detect forest height (90th percentile of canopy height distribution, H90) and density variations was investigated. Moreover, changes in the forest above-ground biomass (AGB) were estimated from height changes between two InSAR DSMs. Bi-temporal airborne laser scanning (ALS) data, aerial orthoimages and an ALS-based AGB change map from a study area in Southern Finland were used as references. The results indicate that the InSAR height change of a forested area correlates more with vegetation density change than with height change. The correlation between the InSAR mean height change and the height change feature from ALS was 0.76 at stand level. Correspondingly, the correlation between the InSAR mean height change and the ALS penetration rate change was 0.89. The AGB changes predicted based on InSAR height change agreed well with the reference data; the root-mean-square error (RMSE) was 20.7 Mg/ha (18.5% of the mean biomass in 2012) at stand level and 27.4 Mg/ha (27.0%) for 16 x 16 m grid cells. The results show that TDX DSMs can be used to detect biomass changes of different orders of magnitude, e.g. due to logging and thinning.
机译:卫星图像提供了覆盖广泛区域的有关森林变化的空间明确信息。在这项研究中,双基地TanDEM-X(TDX)合成孔径雷达(SAR)卫星数据被用于使用SAR干涉测量法(InSAR)得出森林区域的数字表面模型(DSM)。研究了基于时态InSAR DSM的变化特征检测森林高度(冠层高度分布的第90个百分位,H90)和密度变化的能力。此外,根据两个InSAR DSM之间的高度变化估算了森林地上生物量(AGB)的变化。来自芬兰南部研究区的双时空激光扫描(ALS)数据,航空正射影像和基于ALS的AGB变化图被用作参考。结果表明,林区的InSAR高度变化与植被密度变化的关系比与高度变化的关系更大。在展位水平上,InSAR平均高度变化与ALS的高度变化特征之间的相关性为0.76。相应地,InSAR平均高度变化与ALS穿透率变化之间的相关性为0.89。根据InSAR高度变化预测的AGB变化与参考数据非常吻合;展位水平的均方根误差(RMSE)为20.7 Mg / ha(2012年平均生物量的18.5%),而16 x 16 m网格单元的均方根误差为27.4 Mg / ha(27.0%)。结果表明,TDX DSM可用于检测不同数量级的生物量变化,例如由于记录和细化。

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