Yang Haiyan, Yang Xuhai, Zhang Zhe, Zhao Kunjuan
National Time Service Center, Chinese Academy of Sciences, Xi'an 710600, China.
Key Laboratory of Precision Navigation and Timing Technology, Chinese Academy of Sciences, Xi'an 710600, China.
Sensors (Basel). 2018 Feb 27;18(3):714. doi: 10.3390/s18030714.
The current constellation of the BeiDou Navigation Satellite System (BDS) consists of five geostationary earth orbit (GEO) satellites, five inclined geosynchronous satellite orbit (IGSO) satellites, and four medium earth orbit (MEO) satellites. The advantage of using GEO satellites to monitor the ionosphereis the almost motionless ionospheric pierce point (IPP), which is analyzed in comparison with the MEO and IGSO satellites. The results from the analysis of the observations using eight tracking sites indicate that the ionospheric total electron content (TEC) sequence derived from each GEO satellite at their respective fixed IPPs is always continuous. The precision of calculated vertical TEC (VTEC) using BDS B1/B2, B1/B3, and B2/B3 dual-frequency combinationsis compared and analyzed. The VTEC precision based on the B1/B2 dual-frequency measurements using the smoothed code and the raw code combination is 0.69 and 5.54 TECU, respectively, which is slightly higher than VTEC and much higher than VTEC. Furthermore, the ionospheric monitoring results of site JFNG in the northern hemisphere, and CUT0 in the southern hemisphere during the period from 1 January to 31 December 2015 are presented and discussed briefly.
北斗导航卫星系统(BDS)目前的星座由五颗地球静止轨道(GEO)卫星、五颗倾斜地球同步轨道(IGSO)卫星和四颗中地球轨道(MEO)卫星组成。利用地球静止轨道卫星监测电离层的优势在于电离层穿刺点(IPP)几乎静止不动,本文将其与中地球轨道卫星和倾斜地球同步轨道卫星进行了对比分析。利用八个跟踪站的观测数据进行分析的结果表明,每颗地球静止轨道卫星在其各自固定的电离层穿刺点处得到的电离层总电子含量(TEC)序列始终是连续的。对利用北斗系统B1/B2、B1/B3和B2/B3双频组合计算垂直TEC(VTEC)的精度进行了比较和分析。基于B1/B2双频测量,采用平滑码和原始码组合得到的垂直TEC精度分别为0.69和5.54 TECU,略高于垂直TEC且远高于垂直TEC。此外,还简要介绍并讨论了2015年1月1日至12月31日期间北半球JFNG站和南半球CUT0站的电离层监测结果。