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我国GEO卫星高精度测定轨技术进展 被引量:4
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作者 耿虎军 刘友永 +1 位作者 王彬 高华宇 《无线电工程》 2019年第5期357-362,共6页
同步轨道卫星在通信、气象、导航定位、对地观测、数据中继等领域应用广泛,对其轨道精度的要求也越来越高。结合国内外卫星系统的高精度测量体制,介绍了我国GEO卫星高精度测定轨技术的2个发展趋势:厘米级高精度多站测距技术和主动CEI测... 同步轨道卫星在通信、气象、导航定位、对地观测、数据中继等领域应用广泛,对其轨道精度的要求也越来越高。结合国内外卫星系统的高精度测量体制,介绍了我国GEO卫星高精度测定轨技术的2个发展趋势:厘米级高精度多站测距技术和主动CEI测量定轨技术,给出了相应的误差分析、关键技术及解决途径,并介绍了最新试验进展。试验结果表明,给出的2种技术体制均能够实现近10 m量级的GEO卫星实时定轨精度,满足我国GEO卫星的高精度测定轨需求。 展开更多
关键词 geo卫星测定轨 高精度伪码测距 连线端干涉测量 高精度时频传递 相位延时测量
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Orbit determination and prediction for Beidou GEO satellites at the time of the spring/autumn equinox 被引量:8
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作者 LI XiaoJie ZHOU JianHua +3 位作者 HU XiaoGong LIU Li GUO Rui ZHOU ShanShi 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第8期86-94,共9页
Geostationary(GEO) satellites form an indispensable component of the constellation of Beidou navigation system(BDS). The ephemerides, or predicted orbits of these GEO satellites(GEOs), are broadcast to positioning, na... Geostationary(GEO) satellites form an indispensable component of the constellation of Beidou navigation system(BDS). The ephemerides, or predicted orbits of these GEO satellites(GEOs), are broadcast to positioning, navigation, and timing users. User equivalent ranging error(UERE) based on broadcast message is better than 1.5 m(root formal errors: RMS) for GEO satellites. However, monitoring of UERE indicates that the orbital prediction precision is significantly degraded when the Sun is close to the Earth's equatorial plane(or near spring or autumn Equinox). Error source analysis shows that the complicated solar radiation pressure on satellite buses and the simple box-wing model maybe the major contributor to the deterioration of orbital precision. With the aid of BDS' two-way frequency and time transfer between the GEOs and Beidou time(BDT, that is maintained at the master control station), we propose a new orbit determination strategy, namely three-step approach of the multi-satellite precise orbit determination(MPOD). Pseudo-range(carrier phase) data are transformed to geometric range(biased geometric range) data without clock offsets; and reasonable empirical acceleration parameters are estimated along with orbital elements to account for the error in solar radiation pressure modeling. Experiments with Beidou data show that using the proposed approach, the GEOs' UERE when near the autumn Equinox of 2012 can be improved to 1.3 m from 2.5 m(RMS), and the probability of user equivalent range error(UERE)<2.0 m can be improved from 50% to above 85%. 展开更多
关键词 Beidou system (BDS) Beidou time (BDT) geostationary geo satellite spring equinox/autumn equinox solar radia-tion pressure time synchronization user equivalent ranging error
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