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A New Technique for Infrared Remote Sensing Of Solar Induced Fluorescence and Reflectance from Vegetation Covers

机译:植被覆盖的太阳致荧光和反射率红外遥感新技术

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A new technique of remote sensing of solar-induced fluorescence and reflectance from vegetation covers has been developed, radiant calibrated, and applied to investigate solar-induced infrared fluorescence (680-730 nm) and reflectance (750-1000 nm) from some tropical plants within the tropical peak summer period (in August) in Nigeria, for five days, taking readings at sun rise, midday and sunset , each day. The IR device used electronic filters and Fresnel lens to attenuate signals outside the spectral bands. The radiometric detection parameters of the device stood at; Responsivity of 1.5 x 1031 V/W, Noise Equivalent Power NEP of 6.48 x 10 -34 W, and Detectivity of 1.54 x 1033 /W at 780 nm; Responsivity of 2.2 x 1037 V/W, Noise Equivalent Power NEP of 4.45 x 10 -40 W, and Detectivity of 2.0 x 1039 /W at 680 nm. The infrared fluorescence/reflectance for each plant canopy varied consistently with solar irradiance.
机译:已经开发了一种新的遥感技术,以遥感植被覆盖的太阳诱导的荧光和反射率,并进行了辐射校准,并将其用于研究某些热带植物的太阳诱导的红外荧光(680-730 nm)和反射率(750-1000 nm)在尼日利亚的热带夏季高峰期(八月)中,为期五天,每天在太阳升起,正午和日落时读取读数。红外设备使用电子滤镜和菲涅耳透镜来衰减光谱带以外的信号。设备的辐射检测参数为:响应度为1.5 x 1031 V / W,噪声等效功率NEP为6.48 x 10 -34 W,在780 nm处的灵敏度为1.54 x 1033 / W;在680 nm处的响应度为2.2 x 1037 V / W,噪声等效功率NEP为4.45 x 10 -40 W,检测度为2.0 x 1039 / W。每个植物冠层的红外荧光/反射率随太阳辐照度而变化。

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