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Application of an Improved Method of Image Segmentation and Some Considerations on Identification and Tracking of Umbral Dots

机译:改进的图像分割方法的应用及在点识别和跟踪中的一些考虑

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An improved method of image segmentation is introduced. The object-tracking algorithm, originally developed by Sobotka, Brandt, and Simon (Astron. Astrophys. 328, 682, 1997) is modified with special attentions on splitting and merging of umbral dots (UDs), definition of the umbral boundary, and the birth-frames and the death-frames of UDs. By applying the new method of image segmentation and the object-tracking algorithm on a 67-min series of white-light images of a large pore (Sobotka et al., Astrophys. J. 511, 436, 1999), the physical characteristics of 20 “resolved” UDs with umbral origin were recorded. The most probable lifetime of the UDs is between 7 and 10 min. Umbral dots show a typical size of about 230 km. Their mean speeds are smaller than 2 km s−1 with a distribution around a value less than 1 km s−1. However, their average velocities are less than 0.8 km s−1. Brighter (fainter) UDs are formed in the brighter (dimmer) region of the pore. There is no correlation between time-averaged area or time-averaged speeds and lifetimes. Also, the time-averaged peak intensities of UDs do not show any well-defined dependence on the corresponding time-averaged areas. It seems that there is a relation between average velocities of UDs and their time-averaged peak intensities, with brighter UDs moving more slowly.
机译:介绍了一种改进的图像分割方法。最初由Sobotka,Brandt和Simon(Astron。Astrophys。328,682,1997)开发的对象跟踪算法经过修改,特别注意了本影点(UDs)的分割和合并,本影边界的定义以及UD的出生框架和死亡框架。通过将新的图像分割方法和对象跟踪算法应用于一个67分钟的大孔白光图像序列中(Sobotka等,Astrophys。J. 511,436,1999),记录了20个具有本影起源的“解析” UD。 UD的最可能的使用寿命为7到10分钟。虚点的典型大小约为230公里。它们的平均速度小于2 km s -1 ,其分布值小于1 km s -1 。然而,它们的平均速度小于0.8 km s -1 。在孔的较亮(较暗)区域中形成较亮(较暗)的UD。时间平均面积或时间平均速度与寿命之间没有关联。同样,UD的时间平均峰值强度也没有显示出对相应时间平均面积的明确定义的依赖性。 UD的平均速度与它们的时间平均峰值强度之间似乎存在联系,明亮的UD的移动速度更慢。

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