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Comparing the Ocean Color Measurements Between MOS and SeaWiFS: A Vicarious Intercalibration Approach for MOS

机译:比较MOS和SeaWiFS之间的海洋颜色测量:MOS的替代校准方法

摘要

One of the primary goals of the NASA Sensor Intercomparison and Merger for Biological and Interdisciplinary Oceanic Studies (SIMBIOS) project is to develop methods for meaningful comparison and possible merging of data products from multiple ocean color missions. The Modular Optoelectronic Scanner (MOS) is a German instrument that was launched in the spring of 1996 on the Indian IRS-P3 satellite. With the successful launch of NASA's Sea-viewing Wide Field-of-view Sensor (SeaWiFS) in the summer of 1997, there are now two ocean color missions in concurrent operation and there is interest within the scientific community to compare data from these two sensors. In this paper, we describe our efforts to retrieve ocean optical properties from both SeaWiFS and MOS using consistent methods. We first briefly review the atmospheric correction, which removes more than 90% of the observed radiances in the visible, and then describe how the atmospheric correction algorithm used for the SeaWiFS data can be modified for application to other ocean color sensors. Next, since the retrieved water-leaving radiances in the visible between MOS and SeaWiFS are significantly different, we developed a vicarious intercalibration method to recalibrate the MOS spectral bands based on the optical properties of the ocean and atmosphere derived from the coincident SeaWiFS measurements. We present and discuss the MOS retrieved ocean optical properties before and after the vicarious calibration, and demonstrate the efficacy of this approach. We show that it is possible and efficient to vicariously intercalibrate sensors between one and another.
机译:NASA生物和跨学科海洋研究传感器比对和合并(SIMBIOS)项目的主要目标之一是开发一种方法,用于有意义的比较和可能合并多个海洋颜色任务的数据产品。模块化光电扫描仪(MOS)是德国的一种仪器,于1996年春季在印度IRS-P3卫星上发射。随着1997年夏天NASA的海洋宽视场传感器(SeaWiFS)的成功发射,现在有两个海洋色彩任务同时进行操作,科学界对将这两个传感器的数据进行比较感兴趣。在本文中,我们描述了我们使用一致的方法从SeaWiFS和MOS检索海洋光学特性的努力。我们首先简要回顾一下大气校正,该校正除去了可见光中90%以上的观测辐射,然后描述了如何修改用于SeaWiFS数据的大气校正算法,以应用于其他海洋颜色传感器。接下来,由于MOS和SeaWiFS之间在可见光中检索到的放水辐射率显着不同,因此我们开发了一种替代性的互校准方法,该方法可根据海洋和大气的光学特性重新校准MOS光谱带,这些光学特性是由同时进行的SeaWiFS测量得出的。我们介绍和讨论替代校准之前和之后MOS检索到的海洋光学特性,并证明此方法的有效性。我们表明,有可能和有效地相互校准传感器之间的相互之间。

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