首页 | 本学科首页   官方微博 | 高级检索  
     

基于系列斑点图像的视宁度估算精度方法研究
引用本文:胡钢,向永源,刘忠,王新华. 基于系列斑点图像的视宁度估算精度方法研究[J]. 天文研究与技术, 2021, 0(2): 213-225
作者姓名:胡钢  向永源  刘忠  王新华
作者单位:中国科学院云南天文台;中国科学院大学
基金项目:国家自然科学基金(U1831210)资助.
摘    要:半高宽法和像运动法是估算大气视宁度的常用方法,两种方法的估算精度都受到望远镜跟踪误差、风或者机械振动等因素的影响,提高视宁度估算精度在高分辨成像、选址、台站视宁度监测等方面有重要意义.对于半高宽法,用二维高斯函数拟合长曝光点源单星星像并选取合适方向的半高宽估算视宁度,可以有效改善跟踪误差、风或者机械振动等因素的影响.对...

关 键 词:视宁度  半高宽  像运动法  跟踪误差

Seeing Estimation Accuracy Study Based on a Sequence of Speckle Images
Hu Gang,Xiang Yongyuan,Liu Zhong,Wang Xinhua. Seeing Estimation Accuracy Study Based on a Sequence of Speckle Images[J]. Astronomical Research & Technology, 2021, 0(2): 213-225
Authors:Hu Gang  Xiang Yongyuan  Liu Zhong  Wang Xinhua
Affiliation:(Yunnan Observatories,Chinese Academy of Sciences,Kunming 650216,China;University of Chinese Academy of Sciences,Beijing 100049,China)
Abstract:FWHM and image motion are two frequently used methods in the field of astronomy.However,estimation accuracy of these two methods will be affected by tracking error,wind and mechanical vibration.Raising its accuracy plays a rather important role in the area of high-resolution imaging,site selection and seeing monitoring of observatories,etc.For FWHM method,we fit the long exposure image with a two-dimensional gaussian function and choose an appropriate direction to measure its FWHM by which we estimate the seeing parameter.A comparison with spectral ratio method shows a great improvement of our approach against tracking error,wind and mechanical vibration.For image motion method,we employ principle component analysis to project center of gravity coordinates of a sequence of tracking error affected speckle images onto a proper direction on which we find its variance.We further utilize the variance to estimate the seeing parameter.A comparison with spectral ratio method also denotes a considerable improvement of our approach against tracking error,wind and mechanical vibration.
Keywords:Seeing  FWHM  Image motion  Tracking error
本文献已被 CNKI 维普 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号