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Radiometric Calibration and Uncertainty Analysis of KOMPSAT-3A Using the Reflectance-Based Method

机译:基于反射率法的KOMPSAT-3A的辐射定标和不确定度分析

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摘要

In recent years, Korea has sustained consistent access to remote sensed data by launching Korea Multi-Purpose Satellite-3A (KOMPSAT-3A, K3A)—an updated version of the high-resolution KOMPSAT series. This KOMPSAT-3A required calibration and validation (Cal/Val) before and after its launch to enable proper functional characterization and to maintain the veracity of data collected. The Korea Aerospace Research Institute (KARI) executed the initial prelaunch calibration in the laboratory and we performed the Cal/Val of KOMPSAT-3A during the Launch and Early Operation Phase (LEOP) in the field. Two suitable sites in Korea and Mongolia with stable weather, almost uniform terrain, and near Lambertian diffusion, provided the necessary tarp reflectance to calculate the absolute radiometric calibration coefficients. The surface reflectance was determined using 12 and four well-calibrated reference reflectance tarps employing the FieldSpec 3(Analytical Spectral Devices Inc., Boulder, CO, USA) Spectroradiometer. Subsequently, the top of atmosphere (TOA) radiance was estimated using radiative transfer code (RTC) software based on the Atmospheric and Topographic Correction (ATCOR). In addition, cross calibration was simultaneously performed at the Libya-4 pseudo invariant calibration site (PICS) for KOMPSAT-3A TOA radiance, using the spectral band adjustment factor (SBAF) compensated Landsat 8 reflectance and the Second Simulation of Satellite Signal in the Solar Spectrum (6S) to compute cross calibration coefficients. The results of the KOMPSAT-3A absolute calibration coefficient show that the R values were over 0.99, implying a significant correlation for almost all bands between the TOA radiance and the KOMPSAT-3A spectral band response at both campaign sites. However, this study reveals a difference of less than 5% calibration gains for all bands compared to the prelaunch values, while the cross calibration gain is below 5% in visible bands and above 5% in the near infrared band. An effort to optimize the reliability of the absolute calibration coefficients resorted to the rigorous quantification of uncertainties amongst atmospheric conditions, the digital number (DN), the reflectance tarp, the bidirectional reflectance distribution function (BRDF), and ozone levels. Therefore, we presumed that the total uncertainty was 4.27%, which conforms to some published results.
机译:近年来,韩国通过发射“高分辨率卫星” 3A(KOMPSAT-3A,K3A)(高分辨率KOMPSAT系列的更新版本),持续稳定地访问遥感数据。此KOMPSAT-3A在发射前后需要进行校准和验证(Cal / Val),以实现适当的功能表征并保持所收集数据的准确性。韩国航空航天研究所(KARI)在实验室进行了首次发射前校准,我们在现场的发射和早期运行阶段(LEOP)进行了KOMPSAT-3A的Cal / Val。韩国和蒙古的两个合适的地点,天气稳定,地形几乎均匀,并且在朗伯扩散附近,为计算绝对辐射定标系数提供了必要的篷布反射率。使用FieldSpec 3(美国科罗拉多州博尔德市的Analytical Spectral Devices Inc.)分光光度计,使用12个和四个经过良好校准的参考反射率篷布确定表面反射率。随后,使用基于大气和地形校正(ATCOR)的辐射传输代码(RTC)软件估算了大气的最高(TOA)辐射。此外,使用光谱带调整因子(SBAF)补偿的Landsat 8反射率和太阳中卫星信号的第二次模拟,同时在Libya-4伪不变校准站点(PICS)上针对KOMPSAT-3A TOA辐射进行交叉校准。频谱(6S)以计算交叉校准系数。 KOMPSAT-3A绝对校准系数的结果表明,R值超过0.99,这意味着两个运动地点的TOA辐射度和KOMPSAT-3A谱带响应之间的几乎所有谱带都具有显着相关性。但是,这项研究表明,与启动前的值相比,所有频段的校准增益相差不到5%,而交叉校准的增益在可见频段低于5%,而在近红外频段高于5%。为了对绝对校准系数的可靠性进行优化,我们对大气条件,数字值(DN),反射率篷布,双向反射率分布函数(BRDF)和臭氧水平之间的不确定性进行了严格的量化。因此,我们假设总不确定度为4.27%,与一些已公布的结果相符。

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