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首页> 外文期刊>Advances in space research >Impact of BDS-3 experimental satellites to BDS-2: Service area, precise products, precise positioning
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Impact of BDS-3 experimental satellites to BDS-2: Service area, precise products, precise positioning

机译:BDS-3实验卫星对BDS-2的影响:服务范围,精确的产品,精确的定位

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Between 2015 and 2016, the BeiDou satellite navigation system (BDS) successfully launched 5 BeiDou global navigation satellite system experimental (BDS-3e) satellites. The number of available BDS satellites has increased. In this study, in order to analyze the impact of BDS-3e satellites on the current BDS, which is the BeiDou regional navigation satellite system (BDS-2), the number of visible satellites globally was used to analyze the influence of BDS-3e satellites on the service area of BDS. Then, based on the observations from May 3 to 11, 2017, the strategy of combined data processing of BDS-2 satellites and BDS-3e satellites is presented. Simultaneously, the orbits and clocks of BDS-2 satellites and BDS-3e satellites are calculated and their accuracy is analyzed. At last, based on the obtained orbits and clocks, the influence of BDS-3e satellites on the BDS precise positioning is initially analyzed. The results show that BDS-3e satellites can increase the number of visible satellites of BDS by 1 to 3 globally, thus increasing the service area of BDS. The accuracy of orbits and clocks of BDS-2 satellites and BDS-3e satellites determined by B 1I and B3I signals satisfy the requirement of precise positioning. Furthermore, the participation of BDS-3e satellites improve the position dilution of precision (PDOP) value of positioning. The accuracy of precise point positioning (PPP) in the vertical component is significantly improved for tracking station in the low latitudes of the eastern hemisphere. According to multi-day statistics of a single tracking station, the accuracy of the static solution and the kinematic solution is improved by 64.7% and 25.6%, respectively. Moreover, the BDS-3e satellites significantly improve the accuracy of real-time kinematic (RTK) positioning for a medium baseline of 10 km. The E, N, and U components are improved by 5.6%, 14.3% and 7.7%, respectively. (C) 2018 COSPAR. Published by Elsevier Ltd. All rights reserved.
机译:2015年至2016年,北斗卫星导航系统(BDS)成功发射了5颗北斗全球导航卫星系统实验(BDS-3e)卫星。可用的BDS卫星数量已经增加。在这项研究中,为了分析BDS-3e卫星对当前的BDS(北斗区域导航卫星系统(BDS-2))的影响,使用了全球可见卫星的数量来分析BDS-3e的影响BDS服务区域上的卫星。然后,基于2017年5月3日至11日的观察结果,提出了BDS-2卫星和BDS-3e卫星的组合数据处理策略。同时,计算了BDS-2卫星和BDS-3e卫星的轨道和时钟,并对其准确性进行了分析。最后,根据获得的轨道和时钟,初步分析了BDS-3e卫星对BDS精确定位的影响。结果表明,BDS-3e卫星可以使BDS的可见卫星总数增加1到3个,从而增加了BDS的服务范围。由B 1I和B3I信号确定的BDS-2卫星和BDS-3e卫星的轨道和时钟的精度满足精确定位的要求。此外,BDS-3e卫星的参与改善了定位精度(PDOP)值的位置稀释。垂直分量的精确点定位(PPP)的准确性大大提高,可用于东半球低纬度的跟踪站。根据单个跟踪站的多日统计,静态解和运动解的精度分别提高了64.7%和25.6%。此外,BDS-3e卫星可显着提高10 km中等基线的实时运动(RTK)定位的准确性。 E,N和U分量分别提高了5.6%,14.3%和7.7%。 (C)2018年COSPAR。由Elsevier Ltd.出版。保留所有权利。

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