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首页> 外文期刊>Wetlands >Relationship Between Biophysical Parameters and Synthetic Indices Derived from Hyperspectral Field Data in a Salt Marsh from Buenos Aires Province, Argentina
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Relationship Between Biophysical Parameters and Synthetic Indices Derived from Hyperspectral Field Data in a Salt Marsh from Buenos Aires Province, Argentina

机译:来自阿根廷布宜诺斯艾利斯省盐沼的高光谱现场数据得出的生物物理参数与合成指标之间的关系

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摘要

Remote sensing tools allow the environmental evaluation of coastal wetlands at a landscape scale, but a deeper understanding is needed of the interactions between biophysical parameters and the electromagnetic signal. The goal of this work was to analyze and quantify the influence of the aboveground biomass and the Leaf Area Index (LAI) on the spectral response of Spartina densiflora marshes in Mar Chiquita coastal lagoon, Argentina. Spectral reflectance at high resolution was measured in S. densiflora canopies under natural conditions, manipulating standing crop by means of successive harvest. Reflectance data were acquired using a spectroradiometer in visible, near infrared (IR) and shortwave IR bands. Spectral Vegetation Indices (VI) were calculated for each standing crop-LAI situation. Several VI significantly correlated with standing crop and LAI, including indices 1) based on the red-IR edge (IR Index (IRI), 695/760 ratio, Simple Ratio (SR), Red Edge Inflection Point (REIP), and different variations of the Normalized Difference VI (NDVI Rouse, NDVI amber, NDVI NOAA, NDVI Landsat, NDVI Modis), 2) indices based on the sharp change green-IR (green NDVI (GNDVI), 800/550 ratio) and 3) indices with a correction for soil noise (OSAVI: Optimized Soil Adjusted VI (OSAVI), and Modified SAVI (MSAVI). The indices with significant regressions with standing crop and LAI were IRI, NDVIAmber and REIP. The total and green standing crop showed better adjustments than LAI, showing R-2 values of 0.5. These values were obtained with REIP index. Results indicate that LAI and standing crop of S. densiflora stands could be determined from spectral data but estimations should be taken carefully in high biomass scenarios, because of indexes saturation at higher LAI values.
机译:遥感工具可以在景观尺度上对沿海湿地进行环境评估,但是需要对生物物理参数和电磁信号之间的相互作用有更深入的了解。这项工作的目的是分析和量化地上生物量和叶面积指数(LAI)对阿根廷Mar Chiquita沿海泻湖中的Spartina densiflora沼泽的光谱响应的影响。在自然条件下,通过连续收获来操纵站立的作物,在S. densiflora冠层中测量高分辨率的光谱反射率。使用分光辐射计在可见,近红外(IR)和短波红外波段中获取反射率数据。针对每种站立作物的LAI情况计算了光谱植被指数(VI)。几种VI与站立的作物和LAI显着相关,包括基于红色IR边缘(IR索引(IRI),695/760比率,简单比率(SR),红色边缘拐点(REIP))和不同变化的指数1)基于急剧变化的绿色IR(绿色NDVI(GNDVI),800/550比)和3)指数归一化差异VI(NDVI色度,NDVI琥珀色,NDVI NOAA,NDVI Landsat,NDVI Modis),2)指数土壤噪声校正(OSAVI:优化土壤调节VI(OSAVI)和改良SAVI(MSAVI)。与常规作物和LAI相比,具有显着回归的指标是IRI,NDVIAmber和REIP。总常规作物和绿色常规作物的调节效果均好于LAI,R-2值为0.5,这些值是通过REIP指数获得的,结果表明,可以根据光谱数据确定SAI densiflora林分的LAI和站立作物,但由于存在指数,在高生物量情况下应谨慎进行估算在较高的LAI值下饱和。

著录项

  • 来源
    《Wetlands》 |2016年第1期|185-194|共10页
  • 作者单位

    Univ Nacl San Martin, Inst Invest & Ingn Ambiental, Lab Ecol Teledetecc & Ecoinformat, 25 Mayo & Francia,Campus Miguelete UNSAM Piso 1, Buenos Aires, DF, Argentina;

    Inst Argentino Oceanog CONICET, CCT CONICET BB, CC 804,Camino La Carrindanga Km 7-5, RA-8000 Buenos Aires, DF, Argentina;

    Univ Nacl San Martin, Inst Invest & Ingn Ambiental, Lab Ecol Teledetecc & Ecoinformat, 25 Mayo & Francia,Campus Miguelete UNSAM Piso 1, Buenos Aires, DF, Argentina;

    Inst Nacl Tecnol Agr, Inst Clima & Agua, Castelar, Argentina;

    Inst Nacl Tecnol Agr, Inst Clima & Agua, Castelar, Argentina;

    Inst Argentino Oceanog CONICET, CCT CONICET BB, CC 804,Camino La Carrindanga Km 7-5, RA-8000 Buenos Aires, DF, Argentina;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Spectral indices; Remote sensing; Standing crop; Biomass; Leaf area index; Spartina densiflora;

    机译:光谱指数;遥感;站立作物;生物量;叶面积指数;粗枝粉;

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