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Tracking Diurnal Variation in Photosynthetic Down-Regulation Using Low Cost Spectroscopic Instrumentation

机译:使用低成本光谱仪器跟踪光合作用下调的日变化

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摘要

Photosynthetic light-use efficiency (LUE) has gained wide interest as an input to modeling forest gross primary productivity (GPP). The photochemical reflectance index (PRI) has been identified as a principle means to inform LUE-based models, using airborne and satellite-based observations of canopy reflectance. More recently, low-cost electronics have become available with the potential to provide for dense in situ time-series measurements of PRI. A recent design makes use of interference filters to record light transmission within narrow wavebands. Uncertainty remains as to the dynamic range of these sensors and performance under low light conditions, the placement of the reference band, and methodology for reflectance calibration. This paper presents a low-cost sensor design and is tested in a laboratory set-up, as well in the field. The results demonstrate an excellent performance against a calibration standard (R2 = 0.9999) and at low light conditions. Radiance measurements over vegetation demonstrate a reversible reduction in green reflectance that was, however, seen in both the reference and signal wavebands. Time-series field measurements of PRI in a Douglas-fir canopy showed a weak correlation with eddy-covariance-derived LUE and a significant decline in PRI over the season. Effects of light quality, bidirectional scattering effects, and possible sensor artifacts on PRI are discussed.
机译:作为对森林总初级生产力(GPP)进行建模的输入,光合作用的光利用效率(LUE)得到了广泛的关注。光化学反射率指数(PRI)已被确定为使用基于机载和基于卫星的冠层反射率观测结果为基于LUE的模型提供信息的主要手段。最近,低成本电子设备已经变得可用,它有可能提供PRI的密集原位时间序列测量。最近的设计利用干涉滤光片来记录窄波段内的光传输。这些传感器的动态范围和在弱光条件下的性能,参考带的位置以及反射率校准的方法仍不确定。本文介绍了一种低成本的传感器设计,并在实验室以及现场进行了测试。结果表明,在低光照条件下,其在校准标准品(R 2 = 0.9999)下具有出色的性能。植被上的辐射度测量结果表明,绿色反射率可逆降低,但是在参考波段和信号波段都可以看到。道格拉斯冷杉冠层中PRI的时间序列野外测量显示,与涡度协方差衍生的LUE的相关性较弱,并且整个季节PRI均显着下降。讨论了光质量,双向散射效应以及可能的传感器伪影对PRI的影响。

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