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Testing of Automated Photochemical Reflectance Index Sensors as Proxy Measurements of Light Use Efficiency in an Aspen Forest

机译:自动光化学反射指数传感器的测试作为对白杨林光利用效率的代理测量

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摘要

Commercially available autonomous photochemical reflectance index (PRI) sensors are a new development in the remote sensing field that offer novel opportunities for a deeper exploration of vegetation physiology dynamics. In this study, we evaluated the reliability of autonomous PRI sensors (SRS-PRI) developed by METER Group Inc. as proxies of light use efficiency (LUE) in an aspen (Populus tremuloides) forest stand. Before comparisons between PRI and LUE measurements were made, the optical SRS-PRI sensor pairs required calibrations to resolve diurnal and seasonal patterns properly. An offline diurnal calibration procedure was shown to account for variable sky conditions and diurnal illumination changes affecting sensor response. Eddy covariance measurements provided seasonal gross primary productivity (GPP) measures as well as apparent canopy quantum yield dynamics (α). LUE was derived from the ratio of GPP to absorbed photosynthetically active radiation (APAR). Corrected PRI values were derived after diurnal and midday cross-calibration of the sensor’s 532 nm and 570 nm fore-optics, and closely related to both LUE (R2 = 0.62, p < 0.05) and α (R2 = 0.72, p < 0.05). A LUE model derived from corrected PRI values showed good correlation to measured GPP (R2 = 0.77, p < 0.05), with an accuracy comparable to results obtained from an α driven LUE model (R2 = 0.79, p < 0.05). The automated PRI sensors proved to be suitable proxies of light use efficiency. The onset of continuous PRI sensors signifies new opportunities for explicitly examining the cause of changing PRI, LUE, and productivity over time and space. As such, this technology represents great value for the flux, remote sensing and modeling community.
机译:市售的自主光化学反射指数(PRI)传感器是遥感领域的一项新进展,为深入探索植被生理动力学提供了新的机会。在这项研究中,我们评估了METER Group Inc.开发的自主PRI传感器(SRS-PRI)的可靠性,该传感器作为白杨(Populus tremuloides)林分中光利用效率(LUE)的代理。在对PRI和LUE测量值进行比较之前,光学SRS-PRI传感器对需要进行校准以正确解决昼夜和季节模式。脱机的昼夜校准程序被证明可解决变化的天空条件和影响传感器响应的日照变化。涡度协方差测量提供了季节性的总初级生产力(GPP)度量以及表观冠层量子产量动态(α)。 LUE是从GPP与吸收的光合有效辐射(APAR)之比得出的。校正后的PRI值是在传感器的532 nm和570 nm的光学前景经过昼夜交叉校准后得出的,并且与LUE(R 2 = 0.62,p <0.05)和α( R 2 = 0.72,p <0.05)。从校正后的PRI值得出的LUE模型与测得的GPP具有良好的相关性(R 2 = 0.77,p <0.05),其准确性与从α驱动的LUE模型获得的结果相当(R 2 = 0.79,p <0.05)。自动PRI传感器被证明是光利用效率的合适代表。连续PRI传感器的出现为明确检查PRI,LUE和生产率随时间和空间变化的原因提供了新的机会。因此,这项技术对通量,遥感和建模社区具有巨大的价值。

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