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An analysis of digital sunspot counting for determination of sunspot number from Langkawi National Observatory

机译:兰卡威国家天文台测定太阳黑子数的数字太阳黑子数量分析

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The Relative Sunspot Number (RSN) has been determined for centuries manually (visually) and internationally recorded by Solar Influence Data Center (SIDC). This has been the case even today due to strong goal of keeping the sunspot counting data consistent, dating back to the early 1600s. The RSN indicates the Sun's magnetic activities and therefore accurate detection and classification are fundamental. The active use of digital CCD cameras in modern astronomy today has made huge progress in this field. Hence, Langkawi National Observatory (LNO) is fully equipped to conduct astronomical researches digitally including its solar observatory setup. LNO solar observatory has been collecting daily solar images since early 2008, so a digital method of calculating the RSN needs to be developed that corresponds closely to the international RSN. Here, we present the methods, algorithm and results from a small program that was developed based on the data at LNO. The results are found to be consistent with a correlation value between the digital sunspot counting program and International RSN to be at R = 0.7851 for overall data and R=0.9269 (93%) for good images. However this value varies with different quality of images and therefore a very simple method to differentiate the image quality had to be developed before any sunspot counting was done.
机译:相对Sunspot号码(RSN)已经在几个世纪中手动确定(视觉上),并由太阳能影响数据中心(SIDC)进行国际记录。即使在今天,这是由于保持太阳黑子计数数据一致的强劲目标,达到1600年代早期的强劲目标,这是如此。 RSN表示Sun的磁性活动,因此精确的检测和分类是基本的。 Digital CCD摄像机在现代天文学中的积极使用在这一领域取得了巨大进展。因此,Langkawi国家天文台(LNO)完全配备,以进行数字化,包括其太阳天文台设置。 LNO太阳天文台自2008年初以来一直收集日常太阳能图像,因此需要开发一种计算RSN的数字方法,这些方法与国际RSN密切相处。在这里,我们介绍了基于LNO数据开发的小程序的方法,算法和结果。发现结果与数字Sunspot计数程序和国际RSN之间的相关值一致,用于整体数据的R = 0.7851,r = 0.9269(93%)用于良好的图像。然而,这种值随着不同的图像质量而变化,因此在完成任何SunSpot计数之前必须开发出分辨图像质量的非常简单的方法。

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