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New Results of Multi-GNSS Orbits Validation Based on SLR Observations

机译:基于SLR观测的多GNSS轨道验证的新结果

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Nowadays there are more than 30 GNSS satellites equipped with laser retro-reflectors. Orbits of these satellites can be independently validated with a high precision using range observations by satellite laser ranging (SLR). China has completed the Asia-Pacific area COMPASS Satellite Network, and is committed to the establishment of the international GNSS Monitoring and Assessment System (IGMAS). Orbit validation is one of the key factors in the development of IGMAS, so this paper validated almost all GNSS satellites carrying reflectors to see whether the IGMAS orbits is qualified, including all 24 of GLONASS, 4 of COMPASS, 4 of GALILEO based on the rapid orbits from BACC IGMAS Analysis center. According to IERS2010 convention, correction models such as station coordinates, laser propagation delay models were introduced to establish the measurement model. The validation of the BACC orbits shows a mean deviation around 5-10 cm for the GLONASS satellites, 10-15 cm for the COMPASS MEO/IGSO satellites, 2.65 m for the COMPASS GEO satellites, and 20-25 cm for the GALILEO satellites.
机译:如今,有超过30个GNSS卫星配备激光复古反射器。这些卫星的轨道可以通过卫星激光测距(SLR)的范围观测,通过高精度独立地验证。中国已完成亚太地区指南针卫星网络,致力于建立国际GNSS监测和评估系统(IGAMS)。轨道验证是IGAS开发中的关键因素之一,所以本文几乎验证了携带反射器的所有GNSS卫星,看看IGAMS轨道是否合格,包括所有24个Glonass,4号指南针,伽利略的4个基于快速来自BACC IGAS分析中心的轨道。根据IERS2010公约,引入了校正模型,如站坐标,激光传播延迟模型,以建立测量模型。 BACC轨道的验证显示了Glonass卫星的平均偏差为5-10厘米,用于指南针Meo / Igso卫星为10-15厘米,对于罗宾卫星为2.65米,伽利略卫星为20-25厘米。

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