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Effects of ocean products variability from PSF blurring in NIR band

机译:NIR频段PSF模糊的海洋产品变异性的影响

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Development and operational planning for ocean color satellite requires lots of careful consideration of the spatial and radiometric performance, which are represented by modulation transfer function (MTF) and signal-to-noise ratio (SNR) respectively. Those representative values are crucial indicator of sensor performance so that small changes of ocean properties (e.g., remote sensed reflectance (Rrs), surface chlorophyll-a concentrations (Chl-a), and so on) can be quantified and directly related with those values. MTF is affected from a performance of instrument itself and environmental conditions, and its variation leads to change the final products. The goal of this study is to simulate and to analyze the relationship between MTF parameter and ocean product variations, and then to provide a reference for the design of future ocean color sensors. In this study, we used the Geostationary Ocean Color Imager (GOCI) data to generate the simulated atmospheric correction band image. And then Rrs data and ocean products were generated with imagery from two different locations and acquisition times, and we analyzed and compared the statistical results with study area having different characteristics. For ocean products relationships, we notify the linear variation of the absolute percentage difference (APD) according to the changeable MTF value. Especially, Case-Ⅱ water (turbid water) area shows more sensitive variation than Case-Ⅰ water (clear water) area. Even though the same area was applied in the simulation, it was 1-2 times higher sensitivity of variation when a specific ocean phenomena such as red tide. The suggested simulation can be confirmed the relationship between blurred NIR band image and ocean products. And statistical results with MTF values were able to help estimating ocean product precision and designing a future mission such as the Geostationary Ocean Color Imager-Ⅱ (GOCI-Ⅱ) mission currently being progressed.
机译:海洋颜色卫星的开发和运营计划需要仔细考虑空间和辐射性能,这些性能分别由调制传递函数(MTF)和信噪比(SNR)表示。这些代表性值是传感器性能的关键指标,使海洋性质的小变化(例如,遥感反射率(RRS),表面叶绿素 - 一种浓度(CHL-A)等)可以量化,并且与这些值直接相关。 MTF受仪器本身和环境条件的性能影响,其变异导致更换最终产品。本研究的目标是模拟和分析MTF参数和海洋产品变化之间的关系,然后为未来海洋颜色传感器的设计提供参考。在这项研究中,我们使用了地静止海洋彩色成像器(Goci)数据来生成模拟的大气校正带图像。然后使用来自两个不同地点和采集时间的图像产生RRS数据和海洋产品,我们分析并将统计结果与具有不同特性的研究区域进行了分析。对于海洋产品的关系,我们根据可变的MTF值通知绝对百分比差异(APD)的线性变化。特别是,案例-Ⅱ水(混浊水)区域显示比Ⅰ水(透明水)区域更敏感的变化。即使在模拟中应用了相同的区域,当红潮的特定海洋现象时,变异敏感性越高,也是较高的敏感性。建议的模拟可以确认模糊的尼尔带图像和海洋产品之间的关系。 MTF值的统计结果能够帮助估算海洋产品精确度,并设计未来的使命,例如目前正在进行的地球静止海洋彩色成像仪-Ⅱ(Goci-Ⅱ)任务。

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