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A simple filtered photodiode instrument for continuous measurement of narrowband NDVI and PRI over vegetated canopies

机译:一种简单的滤波光电二极管仪器,用于在植被冠层上连续测量窄带NDVI和PRI

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摘要

Recent advances in understanding relationships between spectral reflectance of vegetation canopies and the structural and physiological drivers of canopy-atmosphere carbon dioxide exchange highlight the potential for using narrowband spectral vegetation indices to spatially scale CO fluxes beyond the area of a tower footprint. However, ground reference observations of narrowband spectral reflectance in support of satellite observations can be challenging to obtain because (1) automated sampling of both upwelling and downwelling radiation is required over extended time periods to characterize diurnal and seasonal variability, (2) hyperspectral spectroradiometer data and hardware can be sensitive to environmental factors such as temperature and moisture, and (3) hyperspectral spectroradiometers are expensive, greatly limiting prospects for widespread automated sampling. We have therefore developed the QuadPod: a simple, lightweight, relatively low cost and low power sensor capable of continuously measuring upwelling and downwelling radiation in 10nm wavebands centered at 532nm, 568nm, 676nm, and 800nm. QuadPod measurements can be combined to calculate spectral reflectance indices (e.g., the photochemical reflectance index, PRI; and the normalized difference vegetation index, NDVI) useful for modeling canopy-atmosphere carbon exchange. The basic QuadPod instrument design described here can be implemented using any combination of optical filters in order to calculate other spectral vegetation indices.
机译:在了解植被冠层的光谱反射率与冠层-大气二氧化碳交换的结构和生理驱动因素之间的关系方面的最新进展突显了使用窄带光谱植被指数来空间缩放塔覆盖区域之外的CO通量的潜力。但是,要获得支持卫星观测的窄带光谱反射率的地面参考观测值可能是一项挑战,因为(1)需要在延长的时间段内自动采样上升和下降辐射,以表征昼夜和季节变化,(2)高光谱光谱仪数据而且硬件可能会对温度和湿度等环境因素敏感,并且(3)高光谱光谱仪价格昂贵,极大地限制了广泛自动化采样的前景。因此,我们开发了QuadPod:一种简单,轻巧,成本相对较低且低功耗的传感器,能够连续测量以532nm,568nm,676nm和800nm为中心的10nm波段中的上升和下降辐射。可以结合使用QuadPod测量来计算光谱反射系数指数(例如,光化学反射系数PRI;归一化差异植被指数NDVI),可用于对冠层-大气碳交换进行建模。此处描述的基本QuadPod仪器设计可以使用光学滤波器的任意组合来实现,以便计算其他光谱植被指数。

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