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Determination of the Orbits of Near-Earth Asteroids from Observations at the First Opposition

机译:从第一次反对派的观察确定近地小行星的轨道

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摘要

Observations at the first opposition are used to determine the orbits of 16 near-Earth asteroids with two or more observed oppositions. The orbits are improved by the differential method. This paper considers two modifications of the improvement technique, which are compared to the classical method based on the principle of the least square method (LSM). The first modification uses the principle of least absolute deviations (LAD). In the second modification, the differences O - C (between the observed and calculated positions) are transformed to fit into a new coordinate system whereby the axes go parallel and perpendicular to the asteroid's apparent path (the modified differential method (MDM)). The orbits determined from one opposition by the classical LSM, LAD, and MDM are compared to a more accurate orbit calculated by the LSM from all the available oppositions. The calculations show that in 13 cases out of 16, the asteroid orbits calculated by LAD are more accurate than those calculated by the classical LSM. The improvement by the modified differential method, which includes the O - C transformation, does not produce any perceptible increase in accuracy when compared to the orbits calculated by the classical method.
机译:在第一个对立面上的观测用于确定16个近地小行星的轨道,其中两个或两个以上对立。通过微分法改善了轨道。本文考虑了改进技术的两个改进,它们与基于最小二乘法(LSM)原理的经典方法进行了比较。第一修改使用最小绝对偏差(LAD)的原理。在第二种修改方式中,将观测值和计算出的位置之间的差值O-C转换为适合新坐标系的方式,从而使轴平行于并垂直于小行星的视在路径(改进的微分方法(MDM))。将经典LSM,LAD和MDM从一个对立确定的轨道与LSM从所有可用对立计算出的更精确的轨道进行比较。计算表明,在16种情况中的13种情况下,LAD计算出的小行星轨道比经典LSM计算出的小行星轨道更为精确。与经典方法计算的轨道相比,改进的差分方法的改进(包括O-C转换)不会产生任何可察觉的精度提高。

著录项

  • 来源
    《Solar system research》 |2011年第5期|p.386-391|共6页
  • 作者

    Yu. D. Medvedev;

  • 作者单位

    Institute of Applied Astronomy, Russian Academy of Sciences, St. Petersburg, Russia;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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