YNAO OpenIR  > 天体测量技术及应用研究组
近地小行星及GEO卫星天体测量观测研究
其他题名astrometric observations of Near-Earth asteroids and GEO satellites
张桢君
学位类型博士
导师王建成
2020
学位授予单位中国科学院大学
学位授予地点北京
学位专业天体测量与天体力学
关键词天体测量观测 近地小行星 误差测定与修正 多功 能天文经纬仪 GEO 卫星
摘要近地小行星是太阳系早期形成的产物,近地小行星的高精度的位置测量数据对于太阳系的起源和演化等科学研究具有基础性的作用。高精度的位置测量 数据对于研究太阳系小天体动力学,揭示一些非重力效应也有重要的作用,对建立稳定的动力学参考架也有其独特的优势,对于深空探测具有基础性的作用。此外近地小行星尤其是对人类有潜在威胁的小行星高精度的定位对于保护人类生 存环境,对潜在的威胁提前进行预警以及防灾措施的制定等方面具有重大意义。 GEO 卫星由于其独特的静地特性使得其在国计民生方面具有十分重大的应用价值,地面高精度光学定位观测可以约束卫星角度,改善卫星轨道,减缓卫星碰撞等方面威胁。本文结合CCD天体测量理论以及图像处理基础,对近地小行 星进行了天体测量观测研究,对于多功能天文经纬仪的误差测定以及多方位观测误差的修正进行了研究,同时进行了GEO卫星天体测量观测实验研究。本文主要工作包含以下几部分: 1、熟悉并掌握了基本的天体测量归算流程以及CCD天体测量图像处理流 程。在解决星图匹配问题上提出了一种基于星对旋转角度统计的匹配方法,该方法与经典的三 角匹配方法相比降低了计算复杂度,经过实验证明,该方法有较好的鲁棒性。 2、2018 年利用云南天文台1m 望远镜对2017 VR12、Midas以及Camillo三颗近地小行星进行了高精度的位置测量,其中2017 VR12 以及 Midas 为对地球 有潜在威胁的小行星(PHA)。应用了最新的高精度的 Gaia DR2 星表作为参考星 星表,并对JPL网站上的小行星历表与 IMCCE 网站上的小行星历表的精度进行 了比较。由于目标2017 VR12在观测的时间段接近地球,速度较快导致了星象拖 长。比较了利用PSF方法和重心方法对拖长星象定心结果精度的影响,结果证 明在星象拖长的情况下重心方法有更小的弥散度。2017 VR12在赤经和赤纬方向 的平均 (O-C)s 分别为-0.′′124 和-0.′′655, 残差分别为 0.′′112 和 0.′′273。目标 Midas 在赤经和赤纬方向的 (O-C)s 平均值分别为-0.′′023 和-0.′′047, 残差分别为 0.′′081 和 0.′′058。目标 Camillo 在赤经和赤纬方向的 (O-C)s 的平均值分别为-0.′′014 和 0.′′048, 残差分别为 0.′′035 和 0.′′051。造成 2017 VR12 与历表偏差较大的原因可 能有四:其一是退化的星象导致的定心不准;其二是系统时间比较差,可能会造成比较大的系统偏差;其三是小行星近临地球,由于摄动导致的历表精度较差。第四是缺乏足够的观测资料,历表精度较低。 3、多功能天文经纬仪误差测定及修正。对多功能天文经纬仪仪器本身以及 其潜在应用价值进行了介绍。对水平差、方位差、准直差以及光轴指向变化等仪 器误差对多方位观测的影响进行了分析,对于如何实时测定仪器误差以及转轴 观测模式也进行了分析。同时,对于如何测定本地瞬时天文经纬度以及方位差, 建立本地参考架也进行了分析,并且实现了多功能天文经纬仪误差解算的矢量表示。 4、利用多功能天文经纬仪对GEO卫星进行了天体测量观测实验。规划并且制定了观测纲要,进行了图像和数据处理。对于观测结果进行了仪器误差修正,得到了初步的内符合精度。
其他摘要Near-Earth asteroids are products of the early formation of the solar system. The high-precision position measurement data of Near-Earth asteroid is of fundamental great significance to the scientific research on the origin and evolution of the solar system. High-precision position measurement data also play an important role in studying the dynamics of small celestial bodies in the solar system and revealing some non-gravity effects. It also has its unique advantages in establishing a stable dynamic reference frame and plays a fundamental role in deep space exploration. In addition, the high-precision positioning of Near-Earth asteroids, especially those with potential threats to human beings, is of great significance to protect the living environment of human beings and to make early warning and disaster prevention measures for potential threats in advance.GEO satellite has great application value in national economy and people’s livelihood due to its unique static ground characteristics. High-precision optical positioning observation on the ground can restrict the angle of the satellite, improve the satellite orbit, reduce the threat of satellite collision and other aspects.In this paper, based on the CCD astrometric theory and image processing theory, CCD astrometric observation of Near-Earth asteroids are studied, error measurement and correction of multi-function astronomical theodolite are studied, and experimental research on GEO satellites astrometric observations were conducted. The main work of this paper includes the following 4 parts: 1、In solving the problem of star matching, a matching method based on star pair rotation angle statistics is proposed, which reduces the computational complex-ity compared with the trigonometric matching method.Experimental results show that this method is robust and efficient. 2、In 2018, we made some high-precision position measurements of 2017 VR12, Midas and Camillo by the 1m telescope of Yunnan astronomical observatories, among these, 2017 VR12 and Midas are potentially hazardous asteroids(PHA).We applied the latest high precision Gaia DR2 star catalog as the reference star catalog and compared the accuracy of the asteroid ephemeris from JPL with that from IMCCE.Due to the fact that the target 2017 VR12 was close to the earth during the observation period, the apparent velocity was fast. The influence of PSF method and barycenter method on the accuracy of centroid centering results of the elongated stars was compared, and the results showed that the barycenter method had a smaller dispersion .The mean (O-C)s of 2017 VR12 in right ascension and declivity were -0.′′124 and -0.′′655, and the dispersions were 0.′′ 112 and 0.′′273.The average (O-C)s of the target Midas in right ascension and declination were -0.′′023 and -0.′′047, and the dispersions were 0.′′081 and 0.′′058.The average (O-C)s of the target Camillo in right ascension and declination were -0.′′014 and 0.′′048, and the dispersions were 0.′′035 and 0.′′051.There may be three reasons for the large deviation between observations and the ephemeris for 2017 VR12: Firstly, the centering errors caused by degraded CCD images; Secondly, the timimg system is poor, may cause a large bias; Thirdly, the accuracy of ephemeris may be poor due to the fact that the asteroid is near the earth. Fourthly, the accuracy of ephemeris may be poor due to lack of sufficient observational data. 3、Error measurements and corrections of multi-function astronomical theodolite.The multi-function astronomical theodolite instrument and its potential application values are introduced. The influence of instrument errors such as horizontal error, azimuth error, collimation error and optical axis pointing change on multi-azimuth observation is analyzed. At the same time, how to determine the local instantaneous astronomical longitude and latitude and azimuth difference, to establish the local reference frame is also analyzed. The vector method of multi-function astronomical theodolite is realized. 4、We used the multi-function astronomical theodolite to carry on the astrometric observation experiment of GEO satellite. Observations were planned and implemented, and data and images were processed.
学科领域天文学 ; 天体测量学
学科门类理学 ; 理学::天文学
页数0
语种中文
文献类型学位论文
条目标识符http://ir.ynao.ac.cn/handle/114a53/25427
专题天体测量技术及应用研究组
作者单位中国科学院云南天文台
第一作者单位中国科学院云南天文台
推荐引用方式
GB/T 7714
张桢君. 近地小行星及GEO卫星天体测量观测研究[D]. 北京. 中国科学院大学,2020.
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