期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
三大卫星导航系统在亚太低纬地区的定位精度分析 被引量:3
1
作者 赵存洁 孙红星 范明灿 《导航定位学报》 2015年第2期29-33,共5页
针对我国正在实施的自主发展、独立运行的北斗系统与国外已在运行的著名导航系统(美国全球定位系统、俄罗斯格洛纳斯卫星导航系统)在亚太低纬地区定位精度差异问题,提出了对这三个系统单点定位结果相互进行比对分析的研究思路。本文利... 针对我国正在实施的自主发展、独立运行的北斗系统与国外已在运行的著名导航系统(美国全球定位系统、俄罗斯格洛纳斯卫星导航系统)在亚太低纬地区定位精度差异问题,提出了对这三个系统单点定位结果相互进行比对分析的研究思路。本文利用自主研发的单点定位程序对三系统在泰国春武里地区实测数据进行以下几方面的研究:全天实时可观测卫星数、单系统定位精度、组合系统定位精度以及不同权重对组合系统定位精度影响等。研究结果表明,北斗系统的定位内符合精度稍优于全球定位系统,外符合精度不如全球定位系统,北斗系统与全球定位系统的内外定位精度都明显优于格洛纳斯导航系统;相对于单系统,组合系统在定位稳定性方面有一定提高,但组合定位精度是否改善与单系统的卫星信号数目有关;不同权重的选择对组合定位精度有一定影响。本文的研究结果对促进北斗系统的海外应用具有一定的参考价值。 展开更多
关键词 三大卫星导航定位系统 亚太低纬地区 单点定位 定位精度 GPS
下载PDF
Nighttime electron density enhancements at middle and low latitudes in East Asia 被引量:2
2
作者 ZHANG YanYan LIU LiBo +3 位作者 CHEN YiDing LIU Jing YU You LI Ming 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第4期551-561,共11页
Nighttime enhancements in ionospheric electron density at mid- and low-latitudes are investigated by using the critical frequency of the F2-1ayer (foF2) data measured from ionosonde stations at Okinawa (26.3°N... Nighttime enhancements in ionospheric electron density at mid- and low-latitudes are investigated by using the critical frequency of the F2-1ayer (foF2) data measured from ionosonde stations at Okinawa (26.3°N, 127.8°E, Geomagnetic 15.3°N), Yamagawa (31.2°N, 130.6°E, Geomagnetic 20.4°N), Kokubunji (35.7°N, 139.5°E, Geomagnetic 25.5°N), and Wakkanai (45.4°N, 141.7°E, Geomagnetic 35.4°N) in East Asia during several solar cycles. The results show that there are obvious seasonal and solar activity dependencies of the nighttime electron density enhancements. The enhancements are termed pre-midnight enhancement and post-midnight enhancement, according to the local time when the enhancement appeared. The former has a higher occurrence probability in summer months than in winter months. In contrast, the latter has a larger occurrence probability in winter months than in summer months. Moreover, the nighttime enhancements in electron density are more likely to occur at lower solar activity. These seasonal and solar activity variations of the nighttime enhancements in electron density can be explained in terms of the combined effects of downward plasma flux from the plasmasphere and the neutral winds. 展开更多
关键词 nighttime electron density enhancements critical frequency of the F2-1ayer seasonal and solar activity dependencies vertical equivalent winds
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部