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The Ocean Land Colour Imager (OLCI) for the Sentinel 3 GMES Mission: Status and first test results

机译:Sentinel 3 GMES任务的海洋和陆地彩色成像仪(OLCI):状态和首次测试结果

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Ocean colour sensors are designed to retrieve the spectral distribution of upwelling radiance just above the sea surface (the water-leaving radiance) that is then used to estimate a number of geophysical parameters through the application of specific bio-optical algorithms. Atmospheric correction for ocean colour data is challenging (IOCCG, 2010) as only about 4% of the radiation measured by a satellite instrument originates from the water surface and sensors require high signal to noise ratio (SNR), particularly for the 'blue' bands (~400 run). Ocean colour instrument design must therefore incorporate extremely sensitive and stable radiometry, dedicated on-board calibration and a large number of spectral channels. The Ocean & Land Colour Imager (OLCI) is a high accuracy visible near-infrared optical payload for the Sentinel 3 component of the GMES mission, to provide climatological data continuity with the previous ESA Envisat missions. OLCI is based on the successful opto-mechanical and imaging design of ENVISAT MERIS. The instrument is a quasi-autonomous, self contained, push-broom imaging spectrometer and incorporates the following significant improvements when compared to MERIS, i.e., more spectral bands, 300 m full resolution over land and ocean, and 2-daily coverage.
机译:海洋颜色传感器旨在检索正好在海面上方的上升流辐射的光谱分布(留水辐射率),然后通过应用特定的生物光学算法将其用于估算许多地球物理参数。海洋色彩数据的大气校正具有挑战性(IOCCG,2010年),因为卫星仪器测得的辐射中只有约4%来自水面,并且传感器需要较高的信噪比(SNR),尤其是对于“蓝色”波段(〜400运行)。因此,海洋颜色仪器的设计必须结合极其灵敏且稳定的辐射度,专用的车载校准和大量的光谱通道。海洋和陆地彩色成像仪(OLCI)是GMES任务的Sentinel 3组件的高精度可见光近红外光学有效载荷,可提供与以前的ESA Envisat任务相同的气候数据连续性。 OLCI基于成功的ENVISAT MERIS光学机械和成像设计。该仪器是一种准自主的,独立的推扫式成像光谱仪,与MERIS相比具有以下重大改进,即更多的光谱带,陆地和海洋的300 m全分辨率以及每天2天的覆盖范围。

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