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Uncertainty analysis on direct solar radiation pressure modelling for GPS IIR and Galileo FOC satellites

机译:GPS IIR和GALILEO FOC卫星直接太阳辐射压力建模的不确定性分析

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Solar Radiation Pressure (SRP) is one of the main perturbations that needs to be carefully considered for space missions requiring great precision in satellite's orbit. The computation of SRP is related to both satellite's geometry and surface material. SRP model is usually used in the estimation of satellite's position in space. However, the quality of SRP model is not easy to be assessed in a straightforward way. In this study, we proposed an uncertainty analysis on satellite geometry and surface optical properties using GPS IIR and Galileo FOC spacecraft. We compared the SRP acceleration between simple box-wing and the detailed geometry model under the condition that the optical properties are set exactly the same. It showed that the average difference caused by satellite geometry is around 6.7% and 2% of the total SRP for GPS IIR and Galileo FOC. We also found that the irregular shape of satellites can be a source of the so-called "y-bias" in orbit modelling. In addition, the partial derivatives of SRP acceleration with respect to optical properties for complex satellite geometry are computed using ray tracing. The partials w.r.t optical properties on solar panels are larger than that on satellite bus due to the large area of solar panels. Furthermore, partials w.r.t reflectivity is about 10 times larger than that w.r.t specularity for both solar panels and satellite bus. For GPS IIR (mass 1100 kg) and Galileo FOC (mass 700 kg) satellites, if we require the uncertainty of SRP model be less than 0.1 nm.s~(-2), the standard deviation of optical properties has to be less than 0.001 on solar panels and 0.01 on satellite bus.
机译:太阳辐射压力(SRP)是需要仔细考虑的主要扰动之一,需要在卫星轨道上需要精确的精度。 SRP的计算与卫星的几何形状和表面材料有关。 SRP模型通常用于估计卫星在太空中的位置。然而,SRP模型的质量不易以直接的方式进行评估。在这项研究中,我们提出了使用GPS IIR和Galileo Foc Spacefraft的卫星几何形状和表面光学性能的不确定性分析。我们将简单箱翼和详细几何模型之间的SRP加速进行了比较了光学特性设置完全相同的条件下。结果表明,卫星几何形状引起的平均差异约为GPS IIR和Galileo Foc的总SRP的6.7%和2%。我们还发现,在轨道建模中,卫星的不规则形状可以是所谓的“Y-BIAS”的源。另外,使用光线跟踪计算相对于复杂卫星几何学的光学性质的SRP加速度的部分衍生物。由于太阳能电池板的大面积,太阳能电池板上的部分W.R.T光学性能大于卫星总线上的光学性质。此外,部分W.R.T反射率大约是太阳能电池板和卫星公共汽车的镜面大约10倍。对于GPS IIR(质量1100千克)和伽利略FOC(质量700 kg)卫星,如果我们要求SRP模型的不确定性小于0.1nm.s〜(-2),则光学性质的标准偏差必须小于8.001在太阳能电池板上和0.01卫星公共汽车。

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