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Structural Classification of Marshes with Polarimetric SAR Highlighting the Temporal Mapping of Marshes Exposed to Oil

机译:极化SAR的沼泽的结构分类突出了暴露在油中的沼泽的时间映射。

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Empirical relationships between field-derived Leaf Area Index (LAI) and Leaf Angle Distribution (LAD) and polarimetric synthetic aperture radar (PolSAR) based biophysical indicators were created and applied to map S. alterniflora marsh canopy structure. PolSAR and field data were collected near concurrently in the summers of 2010, 2011, and 2012 in coastal marshes, and PolSAR data alone were acquired in 2009. Regression analyses showed that LAI correspondence with the PolSAR biophysical indicator variables equaled or exceeded those of vegetation water content (VWC) correspondences. In the final six regressor model, the ratio HV/VV explained 49% of the total 77% explained LAI variance, and the HH-VV coherence and phase information accounted for the remainder. HV/HH dominated the two regressor LAD relationship, and spatial heterogeneity and backscatter mechanism followed by coherence information dominated the final three regressor model that explained 74% of the LAD variance. Regression results applied to 2009 through 2012 PolSAR images showed substantial changes in marsh LAI and LAD. Although the direct cause was not substantiated, following a release of freshwater in response to the 2010 Deepwater Horizon oil spill, the fairly uniform interior marsh structure of 2009 was more vertical and dense shortly after the oil spill cessation. After 2010, marsh structure generally progressed back toward the 2009 uniformity; however, the trend was more disjointed in oil impact marshes.
机译:建立了基于田间的叶面积指数(LAI)和叶角分布(LAD)以及基于极化合成孔径雷达(PolSAR)的生物物理指标之间的经验关系,并将其用于绘制互花米草沼泽冠层结构。 PolSAR和现场数据是在2010年,2011年和2012年夏季在沿海沼泽中同时采集的,仅PolSAR数据是在2009年获得的。回归分析显示,LAI与PolSAR生物物理指标变量的对应关系等于或超过了植被水。内容(VWC)对应关系。在最后的六个回归模型中,比率HV / VV解释了77%解释的LAI方差中的49%,而HH-VV相干性和相位信息占了其余部分。 HV / HH主导了两个回归LAD关系,空间异质性和反向散射机制以及相干信息主导了最终的三个回归模型,这些模型解释了LAD方差的74%。 2009年至2012年PolSAR图像的回归结果显示,沼泽LAI和LAD发生了重大变化。尽管直接原因没有得到证实,但由于2010年“深水地平线”漏油事件导致淡水释放,但在漏油事件发生后不久,2009年相当均匀的内部沼泽结构更加垂直和密集。 2010年之后,沼泽结构总体上恢复了2009年的均匀性;然而,这种趋势在石油冲击沼泽中更为明显。

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