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首页> 外文期刊>Advances in space research >Confirmation of gravitationally induced attitude drift of spinning satellite Ajisai with Graz high repetition rate SLR data
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Confirmation of gravitationally induced attitude drift of spinning satellite Ajisai with Graz high repetition rate SLR data

机译:利用格拉茨高重复率SLR数据确定旋转卫星Ajisai的引力引起的姿态漂移

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摘要

The high repetition rate Satellite Laser Ranging system Graz delivers the millimeter precision range measurements to the corner cube reflector panels of Ajisai. The analysis of 4599 passes measured from October 2003 until November 2014 reveals the secular precession and nutation of Ajisai spin axis due to the gravitational forces as predicted by Kubo (1987) with the periods of 35.6 years and 116.5 days respectively. The observed precession cone is oriented at RA = 88.9°, Dec = -88.85° (J2000) and has a radius of 1.08°. The radius of the nutation cone increases from 1.32° to 1.57° over the 11 years of the measurements. We also detect a draconitic wobbling of Ajisai orientation due to the 'motion' of the Sun about the satellite's orbit. The observed spin period of Ajisai increases exponentially over the investigated time span according to the trend function: T= 1.4 92277 exp(0.0148388.Y) [s], where Y is in years since launch (1986.6133), RMS = 0.412 ms. The physical simulation model fitted to the observed spin parameters proves a very low interaction between Ajisai and the Earth's magnetic field, what assures that the satellite's angular momentum vector will remain in the vicinity of the south celestial pole for the coming decades. The developed empirical model of the spin axis orientation can improve the accuracy of the range determination between the ground SLR systems and the satellite's center-of-mass (Kucharski et al., 2015) and enable the accurate attitude prediction of Ajisai for the laser time-transfer experiments (Kunimori et al., 1992).
机译:高重复率卫星激光测距系统Graz可为Ajisai的四角形反射镜面板提供毫米级的精确范围测量。对2003年10月至2014年11月进行的4599次通过的分析显示,由于久保(1987)预测的重力,Ajisai自旋轴的长期运动和动因分别为35.6年和116.5天。观察到的进动锥的方向为RA = 88.9°,Dec = -88.85°(J2000),半径为1.08°。在11年的测量中,章动锥的半径从1.32°增加到1.57°。由于太阳围绕卫星轨道的“运动”,我们还检测到了Ajisai方向的剧烈摆动。根据趋势函数,在所调查的时间段内,观察到的Ajisai自旋周期呈指数增长:T = 1.4 92277 exp(0.0148388.Y)[s],其中Y是自发射以来的年数(1986.6133),RMS = 0.412 ms。根据观测到的自旋参数拟合的物理模拟模型证明了Ajisai与地球磁场之间的相互作用非常低,这确保了卫星的角动量矢量将在未来几十年内保持在南天极附近。建立的自旋轴方向的经验模型可以提高地面单反系统和卫星质心之间距离确定的准确性(Kucharski等人,2015),并可以在激光时间准确预测阿吉赛人的姿态。 -转移实验(Kunimori等,1992)。

著录项

  • 来源
    《Advances in space research》 |2016年第4期|983-990|共8页
  • 作者单位

    Space Science Division, Korea Astronomy and Space Science Institute, 776, Daedeok-Daero, Yuseong-Gu, Daejeon 34055, Republic of Korea,Space Environment Research Centre, AITC2, Mount Stromlo Observatory, Weston Creek ACT 2611, Australia,Australian National University, Research School of Astronomy and Astrophysics, Mount Stromlo Observatory, Cotter Road, Weston Creek ACT 2611, Australia;

    Space Research Institute of the Austrian Academy of Sciences, Lustbuehelstrasse 46, A-8042 Graz, Austria;

    Hitotsubashi University, 2-1 Naka, Kunitachi, Tokyo 186-8601, Japan;

    Space Science Division, Korea Astronomy and Space Science Institute, 776, Daedeok-Daero, Yuseong-Gu, Daejeon 34055, Republic of Korea;

    Space Environment Research Centre, AITC2, Mount Stromlo Observatory, Weston Creek ACT 2611, Australia;

    Space Research Institute of the Austrian Academy of Sciences, Lustbuehelstrasse 46, A-8042 Graz, Austria;

    Space Science Division, Korea Astronomy and Space Science Institute, 776, Daedeok-Daero, Yuseong-Gu, Daejeon 34055, Republic of Korea;

    Space Science Division, Korea Astronomy and Space Science Institute, 776, Daedeok-Daero, Yuseong-Gu, Daejeon 34055, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Satellite Laser Ranging; Ajisai; Satellite spin; Graz SLR system;

    机译:卫星激光测距;味sai卫星自旋;格拉茨单反系统;

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