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首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >RETRIVAL OF BIO-PHYSICAL PARAMETERS IN SUNFLOWER CROP (iHELIANTHUS ANNUUS/i) USING FIELD BASED HYPERSPECTRAL REMOTE SENSING
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RETRIVAL OF BIO-PHYSICAL PARAMETERS IN SUNFLOWER CROP (iHELIANTHUS ANNUUS/i) USING FIELD BASED HYPERSPECTRAL REMOTE SENSING

机译:使用基于场的高光谱遥感,从向日葵作物( Helianthus Annuus )中的生物物理参数检索

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Information on several crop bio-physical parameters is important as inputs for crop growth modelling, leaf stress analysis, crop health study and productivity point of view. Conventionally, biophysical parameters are measured in laboratory methods which are time consuming, laborious and destructive in nature. With the advent of remote sensing technology, the limitations of conventional methods can be overcome. Moreover, due to its narrow absorption bands at different wavelength, use of hyperspectral remote sensing becomes very useful in retrieving several bio-physical parameters. In the present study, field as well as laboratory based spectro-radiometer observations were carried out at Agronomy Department of VisvaBharati University, West Bengal, on Sunflower crop at its peak vegetation stage towards retrieving different bio-physical parameters, specifically leaf area index (LAI), chlorophyll content index (CCI), fluorescence etc. Different foliar boron (no boron, 0.15% and 0.20%) and irrigation (4–6 irrigations) treatments, i.e. total nine treatments with three replications, were applied on sunflower crop during different phenological stages to achievemaximum ranges of the bio-physical parameters. The LAI, CCI and fluorescence parameters were collected using canopy analyzer,chlorophyll content meter and portable gas exchange system, respectively. In each of the treatments, total four hyperspectral measurements were collected, which were further corrected for noise and smoothened using Savitzky-Golay filtering. Total thirty-four narrow band indices were computed based on the hyperspectral data, and the regression analysis was carried out among the indices and bio-physical parameters. The regression parameters were further deployed on the hyperspectral indices to retrieve the bio-physical parameters. The Gitelson & Merzylak-1 (GM-1) and Carter Indices-1 (CI-1) were found to the best indices for retrieving the LAI and CCI, respectively with correlation correlation (r) values of 0.87 and 0.80. On the other hand, Normalized Phaenophytinization Index (NPQI) and GM-1 were found to best for retrieving the Fv/Fm (dark) and Fv?/Fm? (light) with correlation(r)values of 0.92 and 0.76, respectively. Hence, the hyperspectral remote sensing be successfully utilized for retrieving several bio-physical parameters both at field (canopy level) and laboratory (leaf level) conditions.
机译:有关几种作物生物学参数的信息作为作物生长建模,叶胁迫分析,作物健康研究和生产力点的输入重要性。通常,在实验室方法中测量生物物理参数,其性质上是耗时,费力和破坏性的。随着遥感技术的出现,可以克服传统方法的局限性。此外,由于其在不同波长的窄吸收带,高光谱遥感的使用在检索若干生物物理参数方面非常有用。在本研究中,在西孟加拉邦大学Visvabharati大学的农学部门进行了实验室和实验室的光谱辐射计观察,以朝向不同的生物物理参数,特别是叶面积指数(Lai) ),荧光等叶绿素含量指数(CCI),荧光等不同的叶酸硼(No硼,0.15%和0.20%)和灌溉(4-6次灌溉)治疗,即在不同的向日葵作物上应用了三种复制的总共九个复制的治疗生物物理参数的噬曲线阶段的验证阶段。使用冠层分析仪,叶绿素含量计和便携式气体交换系统收集LAI,CCI和荧光参数。在每个治疗中,收集了总共四个高光谱测量,从而使用Savitzky-Golay滤波进一步校正噪音并使噪声平滑。基于高光谱数据计算总三十四个窄带指数,并在索引和生物物理参数之间进行回归分析。回归参数进一步部署在高光谱索引上以检索生物物理参数。发现Gitelson&Merzylak-1(GM-1)和卡特指数-1(CI-1)分别用于检索LAI和CCI的最佳指标,其相关性相关(R)值为0.87和0.80。另一方面,发现标准化的噬菌体化指数(NPQI)和GM-1最适合检索FV / FM(黑暗)和FV?/ FM? (光)分别具有0.92和0.76的相关(R)值。因此,高光谱遥感可用于检索若干生物物理参数,无论是在字段(冠层电平)和实验室(叶级)条件下。

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