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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >EXTRACTION OF VEGETATION BIOPHYSICAL PARAMETERS BY INVERSION OF THE PROSPECT PLUS SAIL MODELS ON SUGAR BEET CANOPY REFLECTANCE DATA - APPLICATION TO TM AND AVIRIS SENSORS
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EXTRACTION OF VEGETATION BIOPHYSICAL PARAMETERS BY INVERSION OF THE PROSPECT PLUS SAIL MODELS ON SUGAR BEET CANOPY REFLECTANCE DATA - APPLICATION TO TM AND AVIRIS SENSORS

机译:甘蔗冠层反射率数据上Prospect Plus帆模型反演提取植被生物物理参数的应用-TM和AVIRIS传感器

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The PROSPECT leaf optical properties and SAIL canopy reflectance models were coupled and inverted using a set of 96 AVIRIS (Airborne Visible/Infrared Imaging Spectrometer) equivalent spectra gathered in afield experiment on sugar beet plots expressing a large range in leaf area index, chlorophyll concentration, and soil color. In a first attempt, the model accurately reproduced the spectral reflectance of vegetation, using six variables: chlorophyll a+b concentration (C-ab), water depth (C-w), leaf mesophyll structure parameter (N), leaf area index (LAI), mean leaf inclination angle (theta(l)), and hot-spot size parameter (s). The four structural parameters (N, LAI, theta(l) and s) were poorly estimated, indicating instability in the inversion process; however, the two biochemical parameters (C-ab and C-w) were evaluated reasonably well, except over very bright soils. In a second attempt, three of the four structure variables were assigned a fixed value corresponding to the average observed in the experiment. Inversions performed to retrieve the remaining structure variable, leaf area index, and the two biochemical variables showed large improvements in the accuracy of LAI, but slightly poorer performance for C-ab and C-w. Here again, poor results were obtained with very bright soils. The compensations observed between the LAI and C-ab or C-w led us to evaluate the performance of two more-synthetic variables, canopy chlorophyll content or canopy water content; for these the inversions produced reasonable estimates. The application of this approach to Landsat TM (Thematic Mapper) data provided similar results, both for the spectrum reconstruction capability and for the retrieval of canopy biophysical characteristics. [References: 35]
机译:PROSPECT叶片的光学特性和SAIL冠层反射率模型使用在野外实验中收集的一组96 AVIRIS(机载可见/红外成像光谱仪)等效光谱进行耦合和反转,该光谱在叶面积指数,叶绿素浓度,和土壤的颜色。首次尝试,该模型使用六个变量准确地再现了植被的光谱反射率:叶绿素a + b浓度(C-ab),水深(Cw),叶肉叶结构参数(N),叶面积指数(LAI) ,平均叶片倾斜角(theta(l))和热点尺寸参数(s)。四个结构参数(N,LAI,theta(l)和s)的估算不充分,表明反演过程不稳定。然而,除了在非常明亮的土壤上,对两个生化参数(C-ab和C-w)的评价相当好。在第二次尝试中,为四个结构变量中的三个分配了一个固定值,该值对应于实验中观察到的平均值。为检索剩余的结构变量,叶面积指数和两个生化变量而进行的反演表明,LAI的准确性有很大提高,但C-ab和C-w的性能稍差。同样,在非常明亮的土壤上也获得了较差的结果。在LAI和C-ab或C-w之间观察到的补偿使我们评估了两个更综合的变量的性能,即冠层叶绿素含量或冠层水分含量。对于这些反演产生了合理的估计。这种方法在Landsat TM(专题测绘仪)数据上的应用在频谱重建能力和冠层生物物理特性的检索方面都提供了相似的结果。 [参考:35]

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