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Incorporating Canopy Cover for Airborne-Derived Assessments of Forest Biomass in the Tropical Forests of Cambodia

机译:结合冠层遮盖物对柬埔寨热带森林中的森林生物量进行机载衍生评估

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摘要

This research examines the role of canopy cover in influencing above ground biomass (AGB) dynamics of an open canopied forest and evaluates the efficacy of individual-based and plot-scale height metrics in predicting AGB variation in the tropical forests of Angkor Thom, Cambodia. The AGB was modeled by including canopy cover from aerial imagery alongside with the two different canopy vertical height metrics derived from LiDAR; the plot average of maximum tree height (Max_CH) of individual trees, and the top of the canopy height (TCH). Two different statistical approaches, log-log ordinary least squares (OLS) and support vector regression (SVR), were used to model AGB variation in the study area. Ten different AGB models were developed using different combinations of airborne predictor variables. It was discovered that the inclusion of canopy cover estimates considerably improved the performance of AGB models for our study area. The most robust model was log-log OLS model comprising of canopy cover only (r = 0.87; RMSE = 42.8 Mg/ha). Other models that approximated field AGB closely included both Max_CH and canopy cover (r = 0.86, RMSE = 44.2 Mg/ha for SVR; and, r = 0.84, RMSE = 47.7 Mg/ha for log-log OLS). Hence, canopy cover should be included when modeling the AGB of open-canopied tropical forests.
机译:这项研究调查了冠层覆盖在影响开放式冠层森林的地上生物量(AGB)动态方面的作用,并评估了基于个体和样地尺度的高度量度在预测柬埔寨吴哥城热带森林中AGB变化的功效。通过对AGB进行建模,其中包括了航空影像中的树冠覆盖以及来自LiDAR的两个不同的树冠垂直高度度量;单棵树的最大树高(Max_CH)和树冠高度(TCH)的顶图平均值。对数对数普通最小二乘(OLS)和支持向量回归(SVR)被用于模拟研究区域的AGB变化。使用机载预测变量的不同组合开发了十种不同的AGB模型。我们发现,在我们研究的范围内,将树冠覆盖估计数包括在内可以大大改善AGB模型的性能。最健壮的模型是仅包括冠层覆盖的对数对数OLS模型(r = 0.87; RMSE = 42.8 Mg / ha)。其他近似于田间AGB的模型也包括Max_CH和树冠覆盖率(对于SVR,r = 0.86,RMSE = 44.2 Mg / ha;对于对数log OLS,r = 0.84,RMSE = 47.7 Mg / ha)。因此,在对开放式热带雨林的AGB进行建模时,应包括遮阳层。

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