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Application Characteristics Analysis of the T20 Solar Radiation Pressure Model in Orbit Determination for COMPASS GEO Satellites

机译:T20太阳辐射压力模型在COMPASS GEO卫星定轨中的应用特性分析

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For sub-meter precise orbit determination of GEO satellites, solar radiation pressure (SRP) perturbation is the major error and also the main factor that restrains the accuracy of orbit prediction. Compared with MEO satellites, GEO satellites are easier to be influenced by SRP perturbation due to their high altitude orbit feature and the magnitude achieves 10~(-7) (relative to the central gravity). Solar pressure modeling relates to multiple factors, including the satellite platform, attitude controlling, etc., thus it is difficult to accurately model it. It is also the biggest error term that affects the accuracy of precise orbit determination (POD) for medium and high Earth orbit satellites. This paper completes the construction of the time series of the 3.5-year model SRP using the recent 3.5-year real data from COMPASS using the post-processing method. Meanwhile, this paper discovers a secular variation trend and a half-year period of the Cr coefficient. The parameters variation features relating to the seasonal solar activities are investigated. Estimated SPR parameters and periods of solar activities are analyzed, as well as the relationship among the POD accuracy. Therefore, some fruitful conclusions have been got, which helps to establish and refine the COMPASS GEO SRP model.
机译:对于GEO卫星的亚米级精确轨道确定而言,太阳辐射压力(SRP)扰动是主要误差,也是限制轨道预测准确性的主要因素。与MEO卫星相比,GEO卫星由于具有高空轨道特征而更容易受到SRP扰动的影响,其震级达到10〜(-7)(相对于中心重力)。太阳压力建模涉及多个因素,包括卫星平台,姿态控制等,因此很难对其进行精确建模。它也是影响中高地球轨道卫星精确轨道确定(POD)准确性的最大误差项。本文使用后处理方法,使用来自COMPASS的最近3.5年实际数据,完成了3.5年模型SRP的时间序列的构建。同时,本文发现了铬系数的长期变化趋势和半年周期。研究了与季节性太阳活动有关的参数变化特征。分析了估计的SPR参数和太阳活动的周期,以及POD精度之间的关系。因此,得出了一些卓有成效的结论,有助于建立和完善COMPASS GEO SRP模型。

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