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Do Open Source Tools Rival Heritage Systems? A comparison of tide models in OCEAN and Orekit

机译:开源工具会竞争传统系统吗? OCEAN和Orekit中潮汐模型的比较

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Open source software tools have been gaining acceptance in the astrodynamics community for some applications, though heritage tools still dominate precision orbit determination and propagation. This paper examines recent tide modeling improvements in the open source Orbit Extrapolation Toolkit (Orekit) and compares it with the US Naval Research Laboratory's (NRL) heritage Orbit Covariance Estimation And ANalysis (OCEAN) system. First, the two tools are compared directly against each other by propagating a given state vector for Stella, a geodetic satellite sensitive to tidal variations in the geopotential. Second, orbits were fit to International Laser Ranging Service (ILRS) laser ranging data using OCEAN and orbit determination software built around Orekit so that a more useful comparison could be made. Five days of data were used to solve for orbital parameters using OCEAN and Orekit. This solution orbit is then propagated forward 25 days and compared to subsequent five day orbit solutions. This comparison between predicted and fitted orbit solutions is used as a metric to compare the quality of each piece of software's dynamic modeling capability. Results from the direct orbit propagation comparison indicate the RSS of postion difference between the OCEAN and Orekit propagated orbit grow to only 7 meters over 25 days. It is also seen that the difference between OCEAN'S and Orekit's implementation of Earth tides are less than 3% of the total tidal effect. The results of the orbit determination analysis show that the Orekit orbit solution comparison is at worst on the same order of magnitude in accuracy as the OCEAN orbit solution comparison, and at best more accuate than the OCEAN orbit solution comparison. While OCEAN produces a more accurate orbit prediction than Orekit in the majority of the cases studied, more testing is need to understand the origin of the difference.
机译:开源软件工具已经在天体动力学领域获得了某些应用的认可,尽管传统工具仍然在精确的轨道确定和传播中占据着主导地位。本文研究了开源Orbit Extrapolation Toolkit(Orekit)中最新潮汐模型的改进,并将其与美国海军研究实验室(NRL)的传统轨道协方差估计和分析(OCEAN)系统进行了比较。首先,通过传播Stella(一种对地势中的潮汐变化敏感的大地卫星)的给定状态向量,直接将这两个工具进行相互比较。其次,使用OCEAN和围绕Orekit构建的轨道确定软件,使轨道适合国际激光测距服务(ILRS)激光测距数据,从而可以进行更有用的比较。五天的数据用于使用OCEAN和Orekit求解轨道参数。然后将此解决方案轨道向前传播25天,并与随后的五天解决方案轨道进行比较。预测轨道解决方案与拟合轨道解决方案之间的比较用作衡量每个软件动态建模功能质量的指标。直接轨道传播比较的结果表明,OCEAN和Orekit传播轨道之间位置差异的RSS在25天内仅增长到7米。还可以看出,OCEAN's和Orekit实施地球潮汐之间的差异不到总潮汐效应的3%。轨道确定分析的结果表明,Orekit轨道解决方案比较的准确性最差的是与OCEAN轨道解决方案的比较相同的数量级,并且充其量比OCEAN轨道解决方案的准确性更高。尽管在大多数研究案例中,OCEAN都比Orekit产生更准确的轨道预测,但仍需要进行更多测试才能了解差异的根源。

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