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Cross-calibration of the Oceansat-2 Ocean Colour Monitor (OCM) with Terra and Aqua MODIS

机译:使用Terra和Aqua MODIS对Oceansat-2海洋颜色监控器(OCM)进行交叉校准

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摘要

The Ocean Colour Monitor (OCM) sensor on-board the Oceansat-2 spacecraft has been operational since its launch in September, 2009. The Oceansat 2 OCM primary design goal is to provide continuity to Oceansat-1 OCM to obtain information regarding various ocean-colour variables. OCM acquires Earth scene measurements in eight multi-spectral bands in the range from 402 to 885 nm. The MODIS sensor on the Terra and Aqua spacecraft has been successfully operating for over a decade collecting measurements of the earth's land, ocean surface and atmosphere. The MODIS spectral bands, designed for land and ocean applications, cover the spectral range from 412 to 869 nm. This study focuses on comparing the radiometric calibration stability of OCM using near-simultaneous TOA measurements with Terra and Aqua MODIS acquired over the Libya 4 target. Same-day scene-pairs from all three sensors (OCM, Terra and Aqua MODIS) between August, 2014 and September, 2015 were chosen for this analysis. On a given day, the OCM overpass is approximately an hour after the Terra overpass and an hour before the Aqua overpass. Due to the orbital differences between Terra and Aqua, MODIS images the Libya 4 site at different scan-angles on a given day. Some of the high-gain ocean bands for MODIS tend to saturate while viewing the bright Libya 4 target, but bands 8-10 (412 nm - 486 nm) provide an unsaturated response and are used for comparison with the spectrally similar OCM bands. All the standard corrections such as bidirectional reflectance factor (BRDF), relative spectral response mismatch, and impact for atmospheric water-vapor are applied to obtain the reflectance differences between OCM and the two MODIS instruments. Furthermore, OCM is used as a transfer radiometer to obtain the calibration differences between Terra and Aqua MODIS reflective solar bands.
机译:自2009年9月发射以来,Oceansat-2航天器上的Ocean Color Monitor(OCM)传感器一直在运行。Oceansat2 OCM的主要设计目标是为Oceansat-1 OCM提供连续性,以获取有关各种海洋信息的信息。颜色变量。 OCM在402至885 nm范围内的八个多光谱带中获取地球场景测量值。 Terra和Aqua航天器上的MODIS传感器已经成功运行了十多年,收集了地球陆地,海洋表面和大气的测量数据。专为陆地和海洋应用而设计的MODIS光谱带覆盖了412至869 nm的光谱范围。这项研究的重点是将近乎同时进行TOA测量的OCM与通过利比亚4号目标获得的Terra和Aqua MODIS进行OCM辐射定标稳定性的比较。本分析选择了2014年8月至2015年9月之间所有三个传感器(OCM,Terra和Aqua MODIS)的当天场景对。在给定的一天,OCM立交桥大约在Terra立交桥之后一个小时,而Aqua立交桥之前一个小时。由于Terra和Aqua之间的轨道差异,MODIS在给定的一天以不同的扫描角度对Libya 4站点进行成像。当观看明亮的利比亚4目标时,MODIS的一些高增益海洋波段趋于饱和,但是波段8-10(412 nm-486 nm)提供了不饱和响应,并用于与光谱相似的OCM波段进行比较。应用所有标准校正,例如双向反射系数(BRDF),相对光谱响应失配以及对大气水蒸气的影响,以获取OCM与两个MODIS仪器之间的反射差异。此外,OCM用作传输辐射计,以获取Terra和Aqua MODIS反射太阳波段之间的校准差异。

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