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CEFLES2: the remote sensing component to quantify photosynthetic efficiency from the leaf to the region by measuring sun-induced fluorescence in the oxygen absorption bands

机译:CEFLES2:遥感组件,通过测量氧气吸收带中太阳诱导的荧光来量化从叶片到该区域的光合作用效率

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摘要

The CEFLES2 campaign during the Carbo Europe Regional Experiment Strategy was designed to provide simultaneous airborne measurements of solar induced fluorescence and CO2 fluxes. It was combined with extensive ground-based quantification of leaf- and canopy-level processes in support of ESA's Candidate Earth Explorer Mission of the "Fluorescence Explorer" (FLEX). The aim of this campaign was to test if fluorescence signal detected from an airborne platform can be used to improve estimates of plant mediated exchange on the mesoscale. Canopy fluorescence was quantified from four airborne platforms using a combination of novel sensors: (i) the prototype airborne sensor AirFLEX quantified fluorescence in the oxygen A and B bands, (ii) a hyperspectral spectrometer (ASD) measured reflectance along transects during 12 day courses, (iii) spatially high resolution georeferenced hyperspectral data cubes containing the whole optical spectrum and the thermal region were gathered with an AHS sensor, and (iv) the first employment of the high performance imaging spectrometer HYPER delivered spatially explicit and multi-temporal transects across the whole region. During three measurement periods in April, June and September 2007 structural, functional and radiometric characteristics of more than 20 different vegetation types in the Les Landes region, Southwest France, were extensively characterized on the ground. The campaign concept focussed especially on quantifying plant mediated exchange processes (photosynthetic electron transport, CO2 uptake, evapotranspiration) and fluorescence emission. The comparison between passive sun-induced fluorescence and active laser-induced fluorescence was performed on a corn canopy in the daily cycle and under desiccation stress. Both techniques show good agreement in detecting stress induced fluorescence change at the 760 nm band. On the large scale, airborne and ground-level measurements of fluorescence were compared on several vegetation types supporting the scaling of this novel remote sensing signal. The multi-scale design of the four airborne radiometric measurements along with extensive ground activities fosters a nested approach to quantify photosynthetic efficiency and gross primary productivity (GPP) from passive fluorescence.
机译:在欧洲Carbo欧洲区域实验策略期间的CEFLES2活动旨在同时提供机载的太阳感应荧光和CO2通量的空中测量。它与对叶和冠层级过程的广泛基于地面的量化相结合,以支持ESA的“荧光探测器”(FLEX)候选地球探测器任务。这项运动的目的是测试从机载平台检测到的荧光信号是否可以用于改善中尺度上植物介导的交换的估计。使用新型传感器组合从四个机载平台对冠层荧光进行了定量:(i)原型机载传感器AirFLEX对氧气A和B波段的荧光进行了定量;(ii)高光谱仪(ASD)在12天的过程中测量了沿样线的反射率,(iii)使用AHS传感器收集包含整个光谱和热区的空间高分辨率地理参考高光谱数据立方体,并且(iv)高性能成像光谱仪HYPER的首次使用在整个空间范围内提供了空间清晰和多时间断面整个地区。在2007年4月,6月和9月的三个测量阶段中,法国西南部莱斯兰德地区的20多种不同植被类型的结构,功能和辐射特征已在地面上得到了广泛表征。该运动的概念特别侧重于量化植物介导的交换过程(光合电子传输,二氧化碳吸收,蒸散)和荧光发射。在日照周期和干燥压力下,在玉米冠层上进行了被动太阳诱导荧光和主动激光诱导荧光之间的比较。两种技术在检测应力诱导的760 nm波段荧光变化方面显示出良好的一致性。在大规模上,比较了支持这种新颖遥感信号缩放的几种植被类型在空中和地面上对荧光的测量结果。四个机载辐射测量的多尺度设计以及广泛的地面活动催生了一种嵌套方法,用于量化被动荧光产生的光合作用效率和总初级生产力(GPP)。

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