首页> 外文期刊>Advances in space research >BeiDou satellite's differential code biases estimation based on uncombined precise point positioning with triple-frequency observable
【24h】

BeiDou satellite's differential code biases estimation based on uncombined precise point positioning with triple-frequency observable

机译:基于未组合精确点定位和三频观测的北斗卫星差分码偏差估计

获取原文
获取原文并翻译 | 示例
           

摘要

The differential code bias (DCB) of BeiDou satellite is an important topic to make better use of BeiDou system (BDS) for many practical applications. This paper proposes a new method to estimate the BDS satellite DCBs based on triple-frequency uncombined precise point positioning (UPPP). A general model of both triple-frequency UPPP and Geometry-Free linear combination of Phase-Smoothed Range (GFPSR) is presented, in which, the ionospheric observable and the combination of triple-frequency satellite and receiver DCBs (TF-SRDCBs) are derived. Then the satellite and receiver DCBs (SRDCBs) are estimated together with the ionospheric delay that is modeled at each individual station in a weighted least-squares estimator, and the satellite DCBs are determined by introducing the zero-mean condition of all available BDS satellites. To validate the new method, 90 day's real tracking GNSS data (from January to March in 2014) collected from 9 Multi-GNSS Experiment (MGEX) stations (equipped with Trimble NETR9 receiver) is used, and the BDS satellite DCB products from German Aerospace Center (DLR) are taken as reference values for comparison. Results show that the proposed method is able to precisely estimate BDS satellite DCBs: (1) the mean value of the day-to-day scattering for all available BDS satellites is about 0.24 ns, which is reduced in average by 23% when compared with the results derived by only GFPSR. Moreover, the mean value of the day-to-day scattering of IGSO satellites is lower than that of GEO and MEO satellites; (2) the mean value of RMS of the difference with respect to DLR DCB products is about 0.39 ns, which is improved by an average of 11% when compared with the results derived by only GFPSR. Besides, the RMS of IGSO and MEO satellites is at the same level which is better than that of GEO satellites.
机译:北斗卫星的差分码偏(DCB)是在许多实际应用中更好地利用北斗系统(BDS)的重要课题。本文提出了一种基于三频非组合精确点定位(UPPP)的BDS卫星DCB估计新方法。提出了三频UPPP和相位平滑距离(GFPSR)的无几何线性组合的通用模型,其中,推导了电离层可观测以及三频卫星和接收机DCB(TF-SRDCB)的组合。然后,在加权最小二乘估计器中,对卫星和接收器DCB(SRDCB)以及在每个单独站点建模的电离层延迟进行估计,并通过引入所有可用BDS卫星的零均值条件来确定卫星DCB。为了验证新方法,使用了从9个Multi-GNSS实验(MGEX)站(配备Trimble NETR9接收器)收集的90天真实跟踪GNSS数据(2014年1月至3月),以及德国航空航天公司的BDS卫星DCB产品中心(DLR)作为参考值进行比较。结果表明,所提出的方法能够精确估计BDS卫星DCB:(1)所有可用BDS卫星的日常散射平均值约为0.24 ns,与之相比平均降低了23%。结果仅由GFPSR得出。此外,IGSO卫星日常散射的平均值低于GEO和MEO卫星; (2)关于DLR DCB乘积的差异的RMS平均值约为0.39 ns,与仅GFPSR得出的结果相比,平均提高了11%。此外,IGSO和MEO卫星的RMS处于同一水平,优于GEO卫星。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号