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Direct Reflectance Measurements from Drones: Sensor Absolute Radiometric Calibration and System Tests for Forest Reflectance Characterization

机译:无人机的直接反射率测量:用于森林反射率表征的传感器绝对辐射度校准和系统测试

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摘要

Drone-based remote sensing has evolved rapidly in recent years. Miniaturized hyperspectral imaging sensors are becoming more common as they provide more abundant information of the object compared to traditional cameras. Reflectance is a physically defined object property and therefore often preferred output of the remote sensing data capture to be used in the further processes. Absolute calibration of the sensor provides a possibility for physical modelling of the imaging process and enables efficient procedures for reflectance correction. Our objective is to develop a method for direct reflectance measurements for drone-based remote sensing. It is based on an imaging spectrometer and irradiance spectrometer. This approach is highly attractive for many practical applications as it does not require in situ reflectance panels for converting the sensor radiance to ground reflectance factors. We performed SI-traceable spectral and radiance calibration of a tuneable Fabry-Pérot Interferometer -based (FPI) hyperspectral camera at the National Physical Laboratory NPL (Teddington, UK). The camera represents novel technology by collecting 2D format hyperspectral image cubes using time sequential spectral scanning principle. The radiance accuracy of different channels varied between ±4% when evaluated using independent test data, and linearity of the camera response was on average 0.9994. The spectral response calibration showed side peaks on several channels that were due to the multiple orders of interference of the FPI. The drone-based direct reflectance measurement system showed promising results with imagery collected over Wytham Forest (Oxford, UK).
机译:近年来,基于无人机的遥感技术发展迅速。小型化的高光谱成像传感器与传统相机相比,提供了更多的物体信息,因此变得越来越普遍。反射率是物理上定义的对象属性,因此通常是要在其他过程中使用的遥感数据捕获的首选输出。传感器的绝对校准为成像过程的物理建模提供了可能性,并实现了有效的反射率校正程序。我们的目标是开发一种用于基于无人机的遥感直接反射率测量的方法。它基于成像光谱仪和辐照光谱仪。这种方法对于许多实际应用非常有吸引力,因为它不需要将传感器辐射率转换为地面反射率的原位反射板。我们在美国国家物理实验室(英国特丁顿)对一台基于可调Fabry-Pérot干涉仪(FPI)的高光谱相机进行了SI跟踪光谱和辐射率校准。该相机通过使用时序光谱扫描原理收集2D格式的高光谱图像立方体来代表新颖的技术。使用独立的测试数据评估时,不同通道的辐射精度在±4%之间变化,并且摄像机响应的线性平均值为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侧峰。基于无人机的直接反射率测量系统在Wytham Forest(英国牛津)的图像上显示出令人鼓舞的结果。

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