Data processing pipeline for multiple-exposure photo-plate digital archives

IF 2.2 4区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS Publications of the Astronomical Society of Japan Pub Date : 2023-06-28 DOI:10.1093/pasj/psad038
P. Jia, Zhimin Yang, Z. Shang, Yong Yu, Jianhai Zhao
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Abstract

Photo-plates are an invaluable historical legacy that have been used for over a hundred years to capture images of celestial objects. By digitizing these photo-plates and processing the images with digital image processing methods, scientists can study celestial objects that exhibit temporal variations. Multiple-exposure photo-plates are a unique type of observation data that can capture images of the same sky at different observation times in a single photo-plate. Such photo-plates can be used to discover flares or moving targets with rapid variations, but they are difficult to process automatically due to their complex observation strategies. This paper proposes a pipeline based on classical data-processing algorithms and machine-learning algorithms to detect flares or moving targets in multiple-exposure photo-plate images automatically. The pipeline was used to process several digitized multiple-exposure photo-plate images from the China Astronomical Plates Data, and preliminary results indicate that the pipeline is effective. In the future, we plan to use our method to discover more celestial objects with temporal variations from photo-plate digital archives.
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多曝光照片底片数字档案的数据处理流水线
照相底片是宝贵的历史遗产,一百多年来一直被用来捕捉天体的图像。通过将这些照片板数字化,并用数字图像处理方法处理图像,科学家们可以研究表现出时间变化的天体。多重曝光照相板是一种独特的观测数据类型,它可以在单个照相板上捕获同一天空在不同观测时间的图像。这类照相板可用于发现耀斑或快速变化的运动目标,但由于其观测策略复杂,难以自动处理。本文提出了一种基于经典数据处理算法和机器学习算法的流水线,用于自动检测多次曝光照片底片图像中的耀斑或运动目标。将该管道用于处理中国天文板数据中多曝光数字化照片板图像,初步结果表明该管道是有效的。未来,我们计划利用我们的方法从照片底片数字档案中发现更多具有时间变化的天体。
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来源期刊
Publications of the Astronomical Society of Japan
Publications of the Astronomical Society of Japan 地学天文-天文与天体物理
CiteScore
4.10
自引率
13.00%
发文量
98
审稿时长
4-8 weeks
期刊介绍: Publications of the Astronomical Society of Japan (PASJ) publishes the results of original research in all aspects of astronomy, astrophysics, and fields closely related to them.
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