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首页> 外文期刊>Applied optics >Ocean-color optical property data derived from the Japanese ocean color and temperature scanner and the French polarization and directionality of the earth's reflectances: a comparison study
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Ocean-color optical property data derived from the Japanese ocean color and temperature scanner and the French polarization and directionality of the earth's reflectances: a comparison study

机译:来自日本海洋颜色和温度扫描仪以及法国对地球反射的偏振和方向性的海洋光学特性数据:比较研究

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We describe our efforts to study and compare the ocean-color data derived from the Japanese Ocean Color and Temperature Scanner (OCTS) and the French Polarization and Directionality of the Earth's Reflectances (POLDER). OCTS and POLDER were both on board Japan's Sun-synchronous Advanced Earth Observing Satellite from August 1996 to June 1997, collecting approximately 10 months of global ocean-color data. This operation provided a unique opportunity for the development of methods and strategies for the merging of ocean-color data from multiple ocean-color sensors. We describe our approach to the development of consistent data-processing algorithms for both OCTS and POLDER and the use of a common in situ data set to calibrate vicariously the two sensors. Therefore the OCTS- and POLDER-measured radiances are bridged effectively through common in situ measurements. With this approach to the processing of data from two different sensors, the only differences in the derived products from OCTS and POLDER are the differences that are inherited from the instrument characteristics. Results show that there are no obvious bias differences between the OCTS- and POLDER-derived ocean-color products, whereas the differences due to noise, which stem from variations in sensor characteristics, are difficult to correct at the pixel level. The ocean-color data from OCTS and POLDER therefore can be compared and merged in the sense that there is no significant bias between two. (C) 2002 Optical Society of America. [References: 41]
机译:我们描述了我们研究和比较从日本海洋颜色和温度扫描仪(OCTS)和法国地球反射的偏振和方向性(POLDER)得出的海洋颜色数据的努力。从1996年8月到1997年6月,OCTS和POLDER都在日本的太阳同步高级地球观测卫星上,收集了大约10个月的全球海洋颜色数据。此操作为开发用于合并来自多个海洋颜色传感器的海洋数据的方法和策略提供了独特的机会。我们描述了开发用于OCTS和POLDER的一致数据处理算法的方法,以及使用通用的原位数据集来精确校准两个传感器的方法。因此,通过普通的原位测量可以有效地桥接OCTS和POLDER测量的辐射。使用这种方法处理来自两个不同传感器的数据时,从OCTS和POLDER派生的产品的唯一区别就是从仪器特性继承的区别。结果表明,在源自OCTS和POLDER的海洋色彩产品之间没有明显的偏差差异,而由于噪声(由于传感器特性的变化而引起的差异)很难在像素级别进行校正。因此,可以比较和合并来自OCTS和POLDER的海洋数据,因为两者之间没有明显的偏差。 (C)2002年美国眼镜学会。 [参考:41]

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