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Template matching method for the analysis of interstellar cloud structure

机译:星际云结构分析的模板匹配方法

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摘要

Context. The structure of interstellar medium can be characterised at large scales in terms of its global statistics (e.g. power spectra) and at small scales by the properties of individual cores. Interest has been increasing in structures at intermediate scales, resulting in a number of methods being developed for the analysis of filamentary structures. Aims. We describe the application of the generic template-matching (TM) method to the analysis of maps. Our aim is to show that it provides a fast and still relatively robust way to identify elongated structures or other image features. Methods. We present the implementation of a TM algorithm for map analysis. The results are compared against rolling Hough transform (RHT), one of the methods previously used to identify filamentary structures. We illustrate the method by applying it to Herschel surface brightness data. Results. The performance of the TM method is found to be comparable to that of RHT but TM appears to be more robust regarding the input parameters, for example, those related to the selected spatial scales. Small modifications of TM enable one to target structures at different size and intensity levels. In addition to elongated features, we demonstrate the possibility of using TM to also identify other types of structures. Conclusions. The TM method is a viable tool for data quality control, exploratory data analysis, and even quantitative analysis of structures in image data.
机译:上下文。星际介质的结构可以通过其整体统计量(例如功率谱)进行大规模表征,而在小范围内可以通过单个核的特性来表征。在中等规模的结构上,人们的兴趣不断增加,导致开发出了许多用于分析丝状结构的方法。目的我们描述了通用模板匹配(TM)方法在地图分析中的应用。我们的目的是表明它提供了一种快速且仍然相对可靠的方式来识别细长结构或其他图像特征。方法。我们介绍了用于地图分析的TM算法的实现。将结果与滚动霍夫变换(RHT)进行比较,后者是以前用来识别丝状结构的方法之一。我们通过将其应用于Herschel表面亮度数据来说明该方法。结果。发现TM方法的性能与RHT的性能相当,但是TM在输入参数(例如与所选空间比例有关的输入参数)方面似乎更健壮。对TM的微小修改使人们可以针对不同大小和强度级别的结构。除了拉长的特征,我们还演示了使用TM识别其他类型结构的可能性。结论。 TM方法是用于数据质量控制,探索性数据分析甚至图像数据结构定量分析的可行工具。

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