首页> 外文会议>Proceedings of joint international agricultural conference (JIAC 2009) >DEVELOPMENT OF A SOLAR-INDUCED CHLOROPHYLL FLUORESCENCE DETECTING INSTRUMENT BASED ON FRAUNHOFER LINE PRINCIPLE
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DEVELOPMENT OF A SOLAR-INDUCED CHLOROPHYLL FLUORESCENCE DETECTING INSTRUMENT BASED ON FRAUNHOFER LINE PRINCIPLE

机译:基于Fraunhofer线原理的太阳能诱导叶绿素荧光检测仪的研制

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The solar-induced fluorescence from plant canopies can be detected from field radiance spectra based on the Fraunhofer line principle. In this paper, a portable solar-induced chlorophyll fluorescence detecting instrument based on this principle was designed and tested. The instrument has a valid survey area of 1.3 X 1.3 when the height between instrument and the ground was fixed to 1.3 meter. The instrument uses sunlight as its light source. There are 2 sets special different photoelectrical detectors with the center wavelength at 760nm and 771nm respectively and every detector's bandwidth is 1nm. Both sets of detectors are composed of a upper detector which are used for detecting incidence sunlight and a bottom detector which are used for detecting reflex light from the canopy of crop. This instrument includes photoelectric detector module, signal process and A/D convert module, the data storing and transmission module and human-machine interface module. The detector is the core of the instrument which measures the spectrums at special bands. The microprocessor calculates solar-induced fluorescence value based on the A/D values get from detectors. And the value can be displayed on the instrument's LCD, stored in the flash memory of instrument and can also be uploaded to PC through the PC's serial interface. The prototype was tested in the crop field at different view directions and the results demonstrate that the instrument can measure the solar-induced chlorophyll value exactly with the correlation coefficients was 0.9 compared to the values got from Analytical Spectral Devices FieldSpec Pro NIR spectrometer. It reveals the on-site and non-sampling mode of crop growth monitoring by fixed on the agricultural machine traveling in the field. This instrument can diagnose the plant growth status by the acquired spectral response.
机译:可以根据Fraunhofer线原理从场辐射光谱中检测到来自植物冠层的太阳诱导荧光。本文设计并测试了基于此原理的便携式日光诱导叶绿素荧光检测仪。当仪器与地面之间的高度固定为1.3米时,仪器的有效测量区域为1.3 X 1.3。仪器使用阳光作为光源。有2套特殊的不同光电探测器,其中心波长分别为760nm和771nm,每个探测器的带宽为1nm。两组检测器均由用于检测入射阳光的上部检测器和用于检测来自农作物冠层的反射光的下部检测器组成。该仪器包括光电探测器模块,信号处理和A / D转换模块,数据存储和传输模块以及人机界面模块。探测器是仪器的核心,可以测量特殊频段的光谱。微处理器根据从检测器获得的A / D值计算太阳感应的荧光值。该值可以显示在仪器的LCD上,存储在仪器的闪存中,也可以通过PC的串行接口上​​传到PC。该原型在不同视野方向的农作物田间进行了测试,结果表明该仪器可以准确地测量太阳诱发的叶绿素值,与分析光谱设备FieldSpec Pro NIR光谱仪获得的相关系数为0.9。它揭示了固定在田间行驶的农机上的作物生长监测的现场和非采样模式。该仪器可以通过获取的光谱响应来诊断植物的生长状况。

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