首页> 外文期刊>Journal of Geodesy >Estimation and analysis of the short-term variations of multi-GNSS receiver differential code biases using global ionosphere maps
【24h】

Estimation and analysis of the short-term variations of multi-GNSS receiver differential code biases using global ionosphere maps

机译:使用全球电离层图估算和分析多GNSS接收机差分码偏差的短期变化

获取原文
获取原文并翻译 | 示例
           

摘要

Care should be taken to minimize the adverse impact of differential code biases (DCBs) on global navigation satellite systems (GNSS)-derived ionospheric information determinations. For the sake of convenience, satellite and receiver DCB products provided by the International GNSS Service (IGS) are treated as constants over a period of 24 h (Li et al. (2014)). However, if DCB estimates show remarkable intra-day variability, the DCBs estimated as constants over 1-day period will partially account for ionospheric modeling error; in this case DCBs will be required to be estimated over shorter time period. Therefore, it is important to further gain insight into the short-term variation characteristics of receiver DCBs. In this contribution, the IGS combined global ionospheric maps and the German Aerospace Center (DLR)-provided satellite DCBs are used in the improved method to determine the multi-GNSS receiver DCBs with an hourly time resolution. The intra-day stability of the receiver DCBs is thereby analyzed in detail. Based on 1 month of data collected within the multi-GNSS experiment of the IGS, a good agreement within the receiver DCBs is found between the resulting receiver DCB estimates and multi-GNSS DCB products from the DLR at a level of 0.24 ns for GPS, 0.28 ns for GLONASS, 0.28 ns for BDS, and 0.30 ns for Galileo. Although most of the receiver DCBs are relatively stable over a 1-day period, large fluctuations (more than 9 ns between two consecutive hours) within the receiver DCBs can be found. We also demonstrate the impact of the significant short-term variations in receiver DCBs on the extraction of ionospheric total electron content (TEC), at a level of 12.96 TECu (TEC unit). Compared to daily receiver DCB estimates, the hourly DCB estimates obtained from this study can reflect the short-term variations of the DCB estimates more dedicatedly. The main conclusion is that preliminary analysis of characteristics of receiver DCB variations over short-term intervals should be finished prior to estimate daily multi-GNSS receiver DCB products.
机译:应注意最小化差分代码偏差(DCB)对全球导航卫星系统(GNSS)衍生的电离层信息确定的不利影响。为方便起见,将国际GNSS服务(IGS)提供的卫星和接收器DCB产品视为24小时内的常数(Li等人(2014))。但是,如果DCB估计值显示出明显的日内波动性,则估计为1天周期内常数的DCB将部分解释电离层建模误差;在这种情况下,将需要在更短的时间内估算DCB。因此,进一步了解接收器DCB的短期变化特性非常重要。在此贡献中,IGS组合了全球电离层地图和德国航空航天中心(DLR)提供的卫星DCB,用于改进方法中,以每小时的时间分辨率确定多GNSS接收器DCB。从而详细分析了接收器DCB的日内稳定性。根据IGS的多GNSS实验中收集的1个月的数据,在接收器DCB中获得了良好的一致性,对于GPS,接收器DCB估计值与DLR的多GNSS DCB产品之间的误差为0.24 ns, GLONASS为0.28 ns,BDS为0.28 ns,伽利略系统为0.30 ns。尽管大多数接收器DCB在1天的时间段内相对稳定,但是可以发现接收器DCB内部存在较大的波动(两个连续小时之间的波动大于9 ns)。我们还演示了接收器DCB的明显短期变化对电离层总电子含量(TEC)的提取的影响,其水平为12.96 TECu(TEC单位)。与每日接收器DCB估计相比,从这项研究中获得的每小时DCB估计可以更专门地反映DCB估计的短期变化。主要结论是,在估算每日多GNSS接收机DCB产品之前,应完成对短期间隔内接收机DCB变化特征的初步分析。

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