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An advanced fluorescence LIDAR system for the acquisition of interleaved active (LIF) and passive (SIF) fluorescence measurements on vegetation

机译:先进的荧光激光雷达系统,用于采集植被上的交错式主动(LIF)和被动(SIF)荧光测量值

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Fluorescence is regarded as a valuable tool to investigate the eco-physiological status of vegetation. Chlorophyll a, which emits a typical fluorescence in the red/far-red region of the e.m. spectrum, plays a key role in the photosynthetic process and its fluorescence is considered an effective proxy of photosynthetic activity of plants. Laser Induced Fluorescence (LIF) has been studied for several decades both at leaf- and canopy-level by means of optical fibers-coupled instrumentation and fluorescence LIDAR systems. On the other hand, Solar-Induced Fluorescence (SIF) has been the object of several scientific studies quite recently, with the aim to investigate the feasibility of measuring the fluorescence of vegetation using passive spectroradiometers in view of global scale monitoring from satellite platforms. This paper presents the main technical features and preliminary tests of a fluorescence LIDAR, recently upgraded to acquire maps of interleaved LIF and SIF measurements at canopy level. In-house developed electronics and software permits the acquisition of interleaved LIF and SIF spectra by switching on/off the laser, the selection of the suitable grating, the setting of the integration time and the synchronization of the Intensified CCD (ICCD) gate opening time. For each pixel of the map, a fluorescence dataset can be acquired containing a LIF spectrum - from 570 nm to 830 nm with a spectral resolution of 0.5 nm - and radiance spectra from 685.53 nm to 690.30 nm with subnanometric spectral resolution containing the molecular oxygen O_2-B telluric absorption band. The latter can be exploited for polynomial regression data fit and SIF retrieval.
机译:荧光被认为是调查植被生态生理状况的宝贵工具。叶绿素a,在e.m.的红色/远红色区域发出典型的荧光。光谱在光合作用过程中起关键作用,其荧光被认为是植物光合作用的有效代表。借助于光纤耦合仪器和荧光LIDAR系统,已经在叶和冠层水平上研究了激光诱导荧光(LIF)数十年。另一方面,近来太阳能诱导荧光(SIF)已经成为一些科学研究的对象,目的是考虑到从卫星平台进行全球规模的监测,使用被动式分光辐射计测量植被的荧光的可行性。本文介绍了荧光激光雷达的主要技术特征和初步测试,该荧光激光雷达最近经过升级,可获取在冠层水平的交错LIF和SIF测量图。内部开发的电子设备和软件允许通过打开/关闭激光器,选择合适的光栅,设置积分时间以及增强CCD(ICCD)闸门打开时间的同步来获取交错的LIF和SIF光谱。对于图的每个像素,可以获取荧光数据集,其中包含LIF光谱-从570 nm至830 nm,光谱分辨率为0.5 nm-和辐射光谱从685.53 nm-690.30 nm,亚纳米光谱分辨率包含分子氧O_2 -B碲吸收带。后者可用于多项式回归数据拟合和SIF检索。

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