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首页> 外文期刊>Frontiers in Marine Science >ProVal: A new autonomous profiling float for high quality radiometric measurements
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ProVal: A new autonomous profiling float for high quality radiometric measurements

机译:ProVal:一种用于高质量辐射测量的新型自动配置浮标

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An efficient system to produce in situ high quality radiometric measurements is compulsory to rigorously perform the vicarious calibration of satellite sensors dedicated to Ocean Color Radiometry (OCR) and to validate their derived products. This requirement is especially needed during the early stages of an OCR satellite activity or for remote areas poorly covered by oceanographic cruises with possible bio-optical anomalies. Taking advantage of Argo’s profiling float, we present a new autonomous profiling float dedicated to in situ radiometric measurements. The float is based on the Provor CTS5 (manufacturer NKE) with an added novel two protruding arm design allowing for sensor redundancies, shading mitigation and near-surface data. Equipped with two identical radiometers on each arm that measure downward irradiance and upwelling radiance at seven wavelengths, the ProVal float generates both redundant radiometric profiles as well as an estimate of Remote Sensing Reflectance. Results from 449 profiles sampled obtained in the NW Mediterranean Sea and in the Indian sector of the Southern Ocean are presented to illustrate the ProVal float technical maturity. Analysis of the behavior of the profiling float, including tilting and ascent speeds, is presented. The vertical stability of the ProVal exhibits 85% of surface data of the Mediterranean Sea with a tilt smaller than 10 degrees. This percentage is 45% in the Southern Ocean due to rougher seas. Redundant sensors provide a characterization of the relative drift between sensors over the deployment which is found to be less than 0.15% per month over a year. Post-cruise calibration of a recovered float revealed no significant drift. As an example of the utility of ProVal floats, a match-up of Remote Sensing Reflectance measured with the European Space Agency Ocean and Land Color Imager (OLCI onboard Sentinel-3A & 3B) is shown. It follows that profiling floats, such as ProVal, could provide a significant contribution to an upcoming global System Vicarious Calibration of space-based radiometers.
机译:必须严格执行有效的系统,以进行高质量的原位辐射测量,以严格执行专门用于海洋颜色辐射(OCR)的卫星传感器的替代校准,并验证其衍生产品。在OCR卫星活动的早期阶段或对于海洋巡游覆盖范围很广且可能存在生物光学异常的偏远地区,尤其需要此要求。利用Argo的轮廓浮标,我们展示了一种专用于原位辐射测量的新型自主轮廓浮标。浮子基于Provor CTS5(制造商NKE),并添加了新颖的两个突出臂设计,可实现传感器冗余,减影和近地表数据。 ProVal float在每条臂上配备了两个相同的辐射计,用于测量7个波长的向下辐射和向上辐射,该辐射生成器既生成了冗余的辐射分布图,又估算了遥感反射率。介绍了从西北地中海和南洋印度部分获得的449个剖面的结果,以说明ProVal浮标的技术成熟度。进行了分析轮廓浮标的行为,包括倾斜和上升速度。 ProVal的垂直稳定性显示了地中海表面数据的85%,倾斜度小于10度。由于海域汹涌,该百分比在南大洋为45%。冗余传感器提供了整个部署过程中传感器之间相对漂移的特征,发现在一年中每月小于0.15%。回收的浮标的巡游后校准没有发现明显的漂移。作为ProVal浮标实用程序的一个示例,显示了使用欧洲航天局海洋和陆地彩色成像仪(Sentinel-3A和3B上的OLCI)测量的遥感反射率的对比。因此,诸如ProVal之类的分析浮标可以为即将到来的全球基于空间的辐射计的系统替代校准提供重要的贡献。

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