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Solar thematic maps for space weather operations

机译:太空天气运行的太阳专题图

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Thematic maps are arrays of labels, or “themes,” associated with discrete locations in space and time. Borrowing heavily from the terrestrial remote sensing discipline, a numerical technique based on Bayes’ theorem captures operational expertise in the form of trained theme statistics, then uses this to automatically assign labels to solar image pixels. Ultimately, regular thematic maps of the solar corona will be generated from high-cadence, high-resolution SUVI images, the solar ultraviolet imager slated to fly on NOAA's next-generation GOES-R series of satellites starting ∼2016. These thematic maps will not only provide quicker, more consistent synoptic views of the sun for space weather forecasters, but digital thematic pixel masks (e.g., coronal hole, active region, flare, etc.), necessary for a new generation of operational solar data products, will be generated. This paper presents the mathematical underpinnings of our thematic mapper, as well as some practical algorithmic considerations. Then, using images from the Solar Dynamics Observatory (SDO) Advanced Imaging Array (AIA) as test data, it presents results from validation experiments designed to ascertain the robustness of the technique with respect to differing expert opinions and changing solar conditions.
机译:专题图是与时空离散位置相关联的标签或“主题”阵列。贝叶斯定理的数字技术是从陆地遥感学科中大量汲取的,它以训练有素的主题统计数据的形式获取运营专业知识,然后使用它自动为太阳图像像素分配标签。最终,将从高节奏,高分辨率的SUVI图像中生成太阳日冕的定期专题图,该太阳紫外线成像器定于2016年开始在NOAA的下一代GOES-R系列卫星上飞行。这些专题图不仅将为太空天气预报员提供更快,更一致的太阳概要视图,而且还将提供新一代专题太阳能数据所必需的数字专题像素蒙版(例如日冕孔,活动区域,耀斑等)。产品,将生成。本文介绍了主题映射器的数学基础,以及一些实用的算法注意事项。然后,使用来自太阳动力学天文台(SDO)高级成像阵列(AIA)的图像作为测试数据,它提供了验证实验的结果,这些验证实验旨在确定该技术在不同专家意见和不断变化的太阳条件下的鲁棒性。

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