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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >A simulation analysis of the detectability of understory burns in miombo woodlands
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A simulation analysis of the detectability of understory burns in miombo woodlands

机译:Miombo林地地下烧伤可探测性的模拟分析

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The miombo woodlands of southern Africa are one of the most extensively burned biomes in the tropics. The detectability of understory burns in these woodlands was assessed with a sensitivity analysis approach, based on a hybrid geometrical-optical radiative transfer model, Model input data were obtained from a variety of sources, including field biometry and spectroradiometry, and satellite data. The effects of variable tree percent cover, leaf area index, stand density, burn scar age, illumination and observation geometry, and spectral region, were taken into account, Detectability of understory burns was defined as the spectral separability of burned and unburned understory, measured with the Jeffries-Matusita distance, for all possible combinations of the green, red, and near-infrared channels of the Moderate Resolution Imaging Spectrometer (MODIS) sensor, Single channels, or pairwise combinations of channels perform poorly at detecting understory burns, but a large improvement in detectability is obtained for the combination of the three spectral domains. The detectability of understory burns is largely insensitive to the effects of stand structure and illumination/observation geometry, and depends primarily on burn scar age. Our results agree with those of previous satellite-based studies of burns scar detectability in African savanna woodlands.
机译:南部非洲的Miombo林地是热带地区燃烧最严重的生物群落之一。基于混合几何-光学辐射传输模型,使用敏感性分析方法评估了这些林地中地下烧伤的可检测性。模型输入数据可从多种来源获得,包括野外生物测定法和光谱辐射测定法,以及卫星数据。考虑了可变树木覆盖率,叶面积指数,林分密度,烧伤疤痕年龄,光照和观察几何形状以及光谱区域的影响,将林下烧伤的可检测性定义为已燃烧和未烧林下的光谱可分离性,在Jeffries-Matusita距离的情况下,对于中分辨率成像光谱仪(MODIS)传感器的绿色,红色和近红外通道的所有可能组合,单通道或通道的成对组合在检测地下烧伤方面效果较差,但是对于三个光谱域的组合,可检测性得到了很大的提高。林下烧伤的可检测性对林分结构和照明/观测几何形状的影响不敏感,并且主要取决于烧伤疤痕的年龄。我们的结果与以前基于卫星的非洲大草原林地烧伤疤痕可检测性研究的结果一致。

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