首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >METHODOLOGY FOR DIRECT REFLECTANCE MEASUREMENT FROM A DRONE: SYSTEM DESCRIPTION, RADIOMETRIC CALIBRATION AND LATEST RESULTS
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METHODOLOGY FOR DIRECT REFLECTANCE MEASUREMENT FROM A DRONE: SYSTEM DESCRIPTION, RADIOMETRIC CALIBRATION AND LATEST RESULTS

机译:无人机直接反射测量的方法:系统描述,放射线校准和最新结果

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We study and analyse performance of a system for direct reflectance measurements from a drone. Key instruments of the system are upwards looking irradiance sensor and downwards looking imaging spectrometer. Requirement for both instruments is that they are radiometrically calibrated, the irradiance sensor has to be horizontally stabilized, and the sensors needs to be accurately synchronized. In our system, irradiance measurements are done with FGI Aerial Image Reference System (FGI AIRS), which uses novel optical levelling methodology and can compensate sensor tilting up to 15°. We performed SI-traceable spectral and radiance calibration of FPI hyperspectral camera at the National Physical Laboratory NPL (Teddington, UK). After the calibration, the radiance accuracy of different channels was between ±4?% when evaluated with independent test data. Sensors response to radiance proved to be highly linear and was on average 0.9994 for all channels. The spectral response calibration showed side peaks on several channels that were due to the multiple orders of interference of the FPI and highlighted the importance of accurate calibration. The drone-based direct reflectance measurement system showed promising results with imagery collected over Jokioinen agricultural grass test site, Finland. AIRS-based image- and band wise image adjustment provided homogenous and seamless image mosaics even under varying illumination conditions and under clouds.
机译:我们研究和分析用于无人机直接反射率测量的系统的性能。该系统的关键仪器是朝上看的辐照度传感器和朝下看的成像光谱仪。这两种仪器的要求都是经过辐射校准的,辐照度传感器必须水平稳定,并且传感器必须精确同步。在我们的系统中,辐照度测量是通过FGI航空影像参考系统(FGI AIRS)进行的,该系统使用了新颖的光学水准测量方法,可以补偿传感器倾斜到15°的情况。我们在美国国家物理实验室NPL(英国特丁顿)对FPI高光谱相机进行了SI可追踪的光谱和辐射度校准。校准后,使用独立的测试数据评估时,不同通道的辐射准确度在±4?%之间。传感器对辐射的响应被证明是高度线性的,并且所有通道的平均响应为0.9994。光谱响应校准显示了由于FPI的多个干扰级而在几个通道上产生的副峰,并突出了准确校准的重要性。基于无人机的直接反射率测量系统在芬兰Jokioinen农用草场上采集的图像显示出令人鼓舞的结果。基于AIRS的图像和带状图像调整即使在变化的照明条件下和云层下也可以提供均匀且无缝的图像镶嵌。

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