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Comparison of Five Numerical Codes for Automated Tracing of Coronal Loops

机译:自动跟踪冠状环的五种数字代码的比较

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The three-dimensional (3D) modeling of coronal loops and filaments requires algorithms that automatically trace curvilinear features in solar EUV or soft X-ray images. We compare five existing algorithms that have been developed and customized to trace curvilinear features in solar images: i) the oriented-connectivity method (OCM), which is an extension of the Strous pixel-labeling algorithm (developed by Lee, Newman, and Gary); ii) the dynamic aperture-based loop-segmentation method (developed by Lee, Newman, and Gary); iii) unbiased detection of curvilinear structures (developed by Steger, Raghupathy, and Smith); iv) the oriented-direction method (developed by Aschwanden); and v) ridge detection by automated scaling (developed by Inhester). We test the five existing numerical codes with a TRACE image that shows a bipolar active region and contains over 100 discernable loops. We evaluate the performance of the five codes by comparing the cumulative distribution of loop lengths, the median and maximum loop length, the completeness or detection efficiency, the accuracy, and flux sensitivity. These algorithms are useful for the reconstruction of the 3D geometry of coronal loops from stereoscopic observations with the STEREO spacecraft, or for quantitative comparisons of observed EUV loop geometries with (nonlinear force-free) magnetic field extrapolation models.
机译:冠状线圈和细丝的三维(3D)建模需要自动跟踪太阳EUV或软X射线图像中曲线特征的算法。我们比较了已开发和定制的五种现有算法,以追踪太阳图像中的曲线特征:i)定向连接方法(OCM),它是Strous像素标记算法的扩展(由Lee,Newman和Gary开发) ); ii)基于动态孔径的环路分割方法(由Lee,Newman和Gary开发); iii)曲线结构的无偏检测(由Steger,Raghupathy和Smith研发); iv)定向方法(由Aschwanden开发); v)通过自动缩放(由Inhester开发)进行山脊检测。我们使用TRACE图像测试了五个现有的数字代码,该图像显示了一个双极活动区域并包含100多个可识别的回路。我们通过比较回路长度的累积分布,回路中值和最大回路长度,完整性或检测效率,准确性和磁通灵敏度来评估这五个代码的性能。这些算法可用于通过STEREO航天器从立体观测结果重建冠状环的3D几何,或用于通过(非线性无力)磁场外推模型对观察到的EUV环几何进行定量比较。

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