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Characteristics of Orbit Determination with Short-Arc Observation by an Optical Tracking Network, OWL-Net

机译:利用OWL-Net光学跟踪网络进行短弧观测确定轨道的特性

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An optical tracking network, the Optical Wide-field patroL Network (OWL-Net), has been developed to maintain the orbital ephemeris of 11 domestic low Earth orbit satellites. The schedule overlapped events were occurred in the scheduling of the OWL-Net with reduction of the optical observation chances. A short-arc observation strategy for the OWL-Net was tested to reduce schedule overlapped events with the optical observation simulation and the orbit determination. In the full-scale optical observation simulation from January 2014 to December 2016, the most frequent overlapped events were occurred 127, 132, and 116 times in the 4th, 34th, and 18th weeks of 2014, 2015, and 2016, respectively. The average number of overlapped event for three years was over 10% for the whole observation chances of five stations. Consequently, the short-arc observation strategy reduced the schedule overlapped events for every observation target of the OWL-Net. In case of the 5 s and 10 s cases, the most schedule overlapped events were removed. The test results of the orbit determination results show that the most maximum orbit prediction errors after seven days are maintained at <10 km in the in-track direction for the short-arc observation simulations. The results demonstrate that the short-arc optical observation strategy is more optimal to maintaining the accuracy of orbital ephemeris with more observation chances.
机译:已经开发了一种光学跟踪网络,即光学广域爱国者网络(OWL-Net),以维护11枚国内近地轨道卫星的星历。调度重叠事件发生在OWL-Net的调度中,同时减少了光学观察的机会。测试了OWL-Net的短弧观测策略,以通过光学观测模拟和轨道确定来减少时间表重叠事件。在2014年1月至2016年12月的全面光学观测模拟中,最频繁的重叠事件分别在2014年,2015年和2016年的第4、34和18周发生了127、132和116次。对于五个台站的整体观测机会,三年中重叠事件的平均数量超过10%。因此,短弧观测策略减少了OWL-Net的每个观测目标的计划重叠事件。在5s和10s的情况下,大多数时间表重叠事件被删除。轨道确定结果的测试结果表明,对于短弧观测模拟,在7天后,最大的轨道预测误差在轨内方向上保持在<10 km处。结果表明,短弧光学观测策略对于保持轨道星历表的准确性具有更高的观测机会是更理想的。

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