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A Simplified Empirical Line Method of Radiometric Calibration for Small Unmanned Aircraft Systems-Based Remote Sensing

机译:基于小型遥感器的遥感辐射定标的简化经验线法

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The use of small unmanned aircraft systems (sUAS) to acquire very high-resolution multispectral imagery has attracted growing attention recently; however, no systematic, feasible, and convenient radiometric calibration method has been specifically developed for sUAS remote sensing. In this research, we used a modified color infrared (CIR) digital single-lens reflex (DSLR) camera as the sensor and the DJI S800 hexacopter sUAS as the platform to collect imagery. Results show that the relationship between the natural logarithm of measured surface reflectance and image raw, unprocessed digital numbers (DNs) is linear and the -intercept of the linear equation can be theoretically interpreted as the minimal possible surface reflectance that can be detected by each sensor waveband. The empirical line calibration equation for every single band image can be built using the -intercept as one data point, and the natural log-transformed measured reflectance and image DNs of a gray calibration target as another point in the coordinate system. Image raw DNs are therefore converted to reflectance using the calibration equation. The Mann–Whitney test results suggest that the difference between the measured and the predicted reflectance values of 13 tallgrass sampling quadrats is not statistically significant. The method theory developed in this study can be employed for other sUAS-based remote sensing applications.
机译:最近,使用小型无人机系统(sUAS)来获取高分辨率的多光谱图像已引起越来越多的关注。然而,还没有专门针对sUAS遥感开发系统,可行和方便的辐射校准方法。在这项研究中,我们使用改良的彩色红外(CIR)数字单镜头反光(DSLR)相机作为传感器,并使用DJI S800六旋翼sUAS作为平台来收集图像。结果表明,测得的表面反射率的自然对数与未经处理的原始图像数字(DNs)之间的关系是线性的,并且线性方程的-intercept在理论上可以解释为每个传感器可以检测到的最小可能的表面反射率波段。可以使用-intercept作为一个数据点,将自然对数转换后的实测反射率和灰度校准目标的图像DNs作为坐标系中的另一点,来建立每个单波段图像的经验线校准方程式。因此,使用校准方程将图像原始DN转换为反射率。曼恩·惠特尼测试结果表明,13个草丛采样四边形的实测反射率值与预测反射率值之间的差异在统计学上不显着。在这项研究中开发的方法理论可以用于其他基于sUAS的遥感应用中。

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