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Evaluation of Gravitational Field Models Based on the Laser Range Observation of Low Earth Orbit Satellites

机译:基于低地球轨道卫星激光测距的引力场模型评估

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The Earth gravitational field model is one of the most important dynamic models in satellite orbit computation. Several space gravity missions made great successes in recent years, prompting the publishing of several gravitational filed models. In this paper, two classical (JGM3, EGM96) and four latest (EIGEN-CHAMP05S, GGM03S, GOCE02S, EGM2008) models are evaluated by employing them in the precision orbit determination (POD) and prediction. These calculations are performed based on the laser ranging observation of four Low Earth Orbit (LEO) satellites, including CHAMP, GFZ-1, GRACE-A, and SWARM-A. The residual error of observation in POD is adopted to describe the accuracy of six gravitational field models. The main results we obtained are as follows. (1) For the POD of LEOs, the accuracies of 4 latest models are at the same level, and better than those of 2 classical models; (2) Taking JGM3 as reference, EGM96 model’s accuracy is better in most situations, and the accuracies of the 4 latest models are improved by 12%-47% in POD and 63% in prediction, respectively. We also confirm that the model’s accuracy in POD is enhanced with the increasing degree and order if they are smaller than 70, and when they exceed 70, the accuracy keeps constant, implying that the model’s degree and order truncated to 70 are sufficient to meet the requirement of LEO computation of centimeter precision.
机译:地球引力场模型是卫星轨道计算中最重要的动力学模型之一。近年来,几次空间重力飞行任务取得了巨大成功,促使发布了几种重力场模型。在本文中,通过在精密轨道确定(POD)和预测中应用它们,对两个经典模型(JGM3,EGM96)和四个最新模型(EIGEN-CHAMP05S,GGM03S,GOCE02S,EGM2008)进行了评估。这些计算是基于对四个低地球轨道(LEO)卫星(包括CHAMP,GFZ-1,GRACE-A和SWARM-A)的激光测距观测而进行的。采用POD中的观测残差来描述六个重力场模型的准确性。我们获得的主要结果如下。 (1)对于LEO的POD,四个最新模型的精度处于同一水平,并且优于两个经典模型的精度; (2)以JGM3为参考,大多数情况下EGM96模型的准确性更高,最新4种模型的精度在POD方面分别提高了12%-47%,在预测方面提高了63%。我们还确认,如果POD小于70,则模型在POD中的精度会随度数和阶数的增加而提高,并且当POD超过70时,精度保持恒定,这意味着模型的度数和阶数被截断为70足以满足LEO计算厘米精度的要求。

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