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Multi-satellite Combined Orbit Determination Parameterized Fusion Model and Weighting Iterative Estimation Algorithm

机译:多卫星组合轨道确定参数化融合模型和加权迭代估计算法

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For multi-LEO combined orbit determination (COD) satellite-network based on space-based tracking telemetry and command (STTC) satellites, kinematic orbit information can be obtained only using the method of precise point positioning (PPP) based on observation models, but the orbits results are not very precise because that the precision of observation data and the Geometry Dilution of Precision (GDOP) of STTC constellation cannot meet the demands of high precision application requirements of LEOs. The high precision denotation model of satellite orbit dynamics based on physics parameter model and mathematics model which associates sparse parameter representation with time sequence analysis, nonlinear semi-parametric combined observation model based on system error parameters modeling and non-parametric component denotation of model error, and COD parameterized fusion model are established aiming at multi-satellite high precision COD based on bi-satellite positioning system and low earth orbiters (LEOs). Then parameters estimation algorithms of the former two kinds of models and the combined estimation algorithm of parameterized fusion model are designed. Theoretic analysis and simulated computation results show that the high precision denotation method of sparse parameters model and the optimized modeling method of observation model considering model error can improve modeling precision, and combined estimation algorithm of parameterized fusion model can synchronously ameliorate orbit determination precision ulteriorly.
机译:对于基于空间的跟踪遥测和命令(STTC)卫星的多LEO组合轨道确定(COD)卫星网络,可以仅使用基于观察模型的精确点定位(PPP)的方法来获得运动轨道信息,但是轨道结果不是很精确,因为观察数据的精度和STTC星座的精度(GDOP)的几何稀释度不能满足LEOS的高精度应用要求的需求。基于物理参数模型和数学模型的卫星轨道动力学的高精度表示模型与时间序列分析,非线性半导体组合观测模型与系统误差参数建模的非线性半导体组合观测模型和模型误差的非参数分量表示,基于双卫星定位系统和低地球轨道(LEOS)的多卫星高精度COD建立了COD参数化融合模型。然后,设计了前两种模型的参数估计算法和参数化融合模型的组合估计算法。理论分析和模拟计算结果表明,考虑模型误差的稀疏参数模型的高精度表示方法和考虑模型误差的观察模型的优化建模方法可以提高建模精度,参数化融合模型的组合估计算法可以同步地改善轨道判定精度。

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