徐超1, 2,
李孝辉1,
张慧君1,
王文利1
1.中国科学院国家授时中心 ??西安 ??710600
2.中国科学院大学 ??北京 ??100039
基金项目:国防科技创新基金(CXJJ-17-M110)
详细信息
作者简介:李博:男,1989 年生,博士生,研究方向为多信息源融合导航方法
徐超:男,1989 年生,博士生,研究方向为高精度时间频率测量控制方法与技术
李孝辉:男,1974 年生,研究员,主要研究方向为卫星导航系统中高精度时间频率测量控制方法与技术
通讯作者:李博 lbeer1831@163.com
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被引次数:0
出版历程
收稿日期:2017-12-18
修回日期:2018-05-18
网络出版日期:2018-07-12
刊出日期:2018-09-01
BeiDou Navigation Satellite System in Challenge Environment Using an Atomic Clock and Barometric Altimeter
Bo LI1, 2,,,Chao XU1, 2,
Xiaohui LI1,
Huijun ZHANG1,
Wenli WANG1
1. National Time Service Center, Chinese Academy of Sciences, Xi’an 710600, China
2. University of Chinese Academy of Sciences, Beijing 100039, China
Funds:Defense Science and Technology Innovation Fund (CXJJ-17-M110)
摘要
摘要:在城市峡谷等遮挡环境下,接收机无法连续进行定位解算;并且高程定位精度不能满足用户在立交桥或者盘山公路等环境下的定位需求。在接收机内使用原子钟,可以利用原子钟的高稳定性,对钟差进行高精度的预测。并通过与气压测高仪共同辅助北斗系统定位,可以有效提高接收机的定位精度和连续性;该文首先理论分析了原子钟和气压测高仪辅助定位算法;然后,提出一种气压测高仪初始化校正方法,并通过对钟差噪声类型的分析确定了钟差预测方法;最后,模拟遮挡环境,进行原子钟和气压测高仪辅助北斗卫星导航系统定位试验,并分析了定位结果。结果表明:仅跟踪两颗可见卫星,便可以进行定位解算,并且垂直方向上的定位误差从8.2 m (RMSE)下降到了5.2 m,定位结果的波动从4.6 m下降到了0.8 m。
关键词:北斗卫星导航系统/
遮挡环境/
双星定位/
原子钟/
气压测高仪
Abstract:The vertical positioning accuracy of BeiDou satellite navigation System (BDS) and the continuity of receiver in the challenge environment can not satisfy the user demand. If atomic clocks are used in the receiver, the high stability of the atomic clock can be used for long time and high precision prediction of receiver clock bias. The positioning accuracy and continuity are improved by using atomic clock and barometric altimeter. This article first analyzes the atomic clocks and barometric altimeter aided BDS positioning algorithm; Then, correction method is proposed for initialization of barometric altimeter, and analysis on the difference of noise type clock is used to determine the clock bias prediction method; Finally, positioning experiment of the atomic clock and barometric altimeter aided BDS in simulation challenge environment is carried out, and the positioning result is analyzed. The results show that BDS can positioning solution to track two visible satellites, and vertical positioning accuracy is significantly improved. The positioning error in the vertical direction is decreased from 8.2 m (RMSE) to 5.2 m, and the fluctuation of the positioning results decreased from 4.6 m to 0.8 m.
Key words:BeiDou navigation satellite System (BDS)/
Challenge environment/
Double satellite positioning/
Atomic clock/
Barometric altimeter
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