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ORBIT DETERMINATION OF SPACECRAFT IN EARTH-MOON L1 AND L2 LIBRATION POINT ORBITS

机译:轨道在地球L1和L2拉动点轨道中的航天器确定

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The ARTEMIS mission, part of the THEMIS extended mission is the first to fly spacecraft in the Earth-Moon Lissajous regions. In order to effectively perform lunar Lissajous station-keeping maneuvers, the ARTEMIS operations team has provided orbit determination solutions with typical accuracies on the order of 0.1 km in position and 0.1 cm/s in velocity. The ARTEMIS team utilizes the Goddard Trajectory Determination System (GTDS), using a batch least squares method, to process range and Doppler tracking measurements from the NASA Deep Space Network (DSN), Berkeley Ground Station (BGS), Merritt Island (MILA) station, and United Space Network (USN). The team has also investigated processing of the same tracking data measurements using the Orbit Determination Tool Kit (ODTK) software, which uses an extended Kalman filter and recursive smoother to estimate the orbit. The orbit determination results from each of these methods will be presented and we will discuss the advantages and disadvantages associated with using each method in the lunar Lissajous regions. In addition, we used the Orbit Determination Error Analysis System (ODEAS) to perform covariance analyses using various tracking data schedules. From this analysis, it was determined that 3.5 hours of DSN TRK-2-34 range and Doppler tracking data every other day would suffice to meet the predictive orbit knowledge accuracies in the Lissajous region.
机译:Artemis使命,部分主题扩展任务是第一个在地球丽莎地区飞行航天器。为了有效地执行月球景观站保留的机动,Artemis运营团队已经为轨道确定解决方案提供了典型的精度,典型的速度为0.1 km位置和0.1cm / s的速度。 Artemis团队利用戈达德轨迹测定系统(GTDS),使用批次最小二乘法,处理来自美国宇航局深空网(DSN),伯克利地面站(BGS),Merritt Island(MIRA)站的范围和多普勒跟踪测量和United Space Network(USN)。该团队还使用轨道确定工具套件(ODTK)软件研究了相同的跟踪数据测量的处理,该软件使用扩展的卡尔曼滤波器和递归更顺畅来估计轨道。将介绍来自这些方法中的每种方法的轨道确定结果,我们将讨论在月球景区中使用每种方法相关的优点和缺点。此外,我们使用轨道确定误差分析系统(odeas)使用各种跟踪数据计划来执行协方差分析。从这个分析中,确定3.5小时的DSN TRK-2-34范围和多普勒跟踪数据每隔一天都足以满足Lissajous地区的预测轨道知识准确性。

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