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GIOVE-A卫星精密定轨仿真研究 总被引:1,自引:0,他引:1
基于GPS系统的实测数据,在极为类似的条件下,仿真研究了GIOVE-A卫星的精密定轨问题。以IGS提供的GPS精密星历为时空基准,利用12个全球分布的跟踪站数据,在精确确定地面站坐标、精密时间同步以及确定对流层参数的基础上,进一步利用单颗GPS卫星仿真GIOVE-A卫星实施了精密轨道确定。结果显示,采用本文方法计算的单颗导航卫星轨道的三维位置精度优于50 cm,径向精度达到了10 cm。 相似文献
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介绍了GIOVE-A卫星信号,分析了GIOVE-A卫星信号质量;与GPS CA码信号质量进行了比较。 相似文献
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Galileo系统的频率和信号结构 总被引:2,自引:2,他引:2
根据近期公布的由Galileo信号任务组制订的Galileo频率和信号结构计划,列出了Galileo选用的频率和信号结构,包括数据周期,伪随机噪声码扩频的实施等,它考虑了和GPS系统的全兼容和相互共用问题,但对码序列选择、导航电文格式内容等方面尚未确定,有待今后进一步研究确定后公布。 相似文献
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Emilie Rebeyrol Olivier Julien Christophe Macabiau Lionel Ries Antoine Delatour Laurent Lestarquit 《GPS Solutions》2007,11(3):159-171
Spectrum limitations for navigation systems require that the various navigation signals broadcast by the Galileo system must
be combined and must utilize bandwidth-efficient modulations. At the L1 band, one of the most important questions is how to
combine all the Open Service signals and the Public Regulated Service signal at the payload level, while maintaining good
performance at reception. The Interplex modulation, a particular phase-shifted-keyed/phase modulation (PSK/PM), was chosen
to transmit these signals because it is a constant-envelope modulation, thereby allowing the use of saturated power amplifiers
with limited signal distortion. The Interplex modulation was also taken as baseline at the E6 band to transmit the three channels
and the services associated on the same carrier frequency. At the E5 band, the modulation must combine two different services
on a same constant envelope composite signal, while keeping the simplicity of a BOC implementation. The constant envelope
Alternate Binary Offset Carrier (ALTBOC) modulation was chosen as the solution to transmit the Galileo E5 band signal. The
main objective of this paper is to study these Galileo modulations. After the introduction, the E5 band signals are described,
followed by the Alternate BOC modulation which has been chosen to transmit them. The second part describes the general formulation
of the Interplex modulation and its key parameters for an optimal multiplexing of the Galileo L1 band signals. Since the Galileo
Open Service signals at the L1 band are still not yet completely specified, different test cases are considered and their
impact on the resulting choice for the Interplex modulation parameters is exposed. 相似文献
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介绍了GPS与Galileo共用信号的演变过程,通过BOC(1,1)在兼容性、互操作性方面的表现,以及将MBOC(6,1,1/11)与之相比较,描述了MBOC(6,1,1/11)在这两个方面的表现。可供我国卫星导航信号体制设计借鉴学习,为GPS/Galileo接收机设计提供参考。 相似文献
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Modernization milestone: BeiDou M2-S initial signal analysis 总被引:2,自引:0,他引:2
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针对传统接收机无法同时捕获两种不同卫星系统信号Galileo E1或GPS C/A的问题,该文提出E1和C/A相干联合捕获和E1-C和C/A相干联合捕获两种新算法。基于E1和C/A联合相干捕获算法,利用E1的数据信号和导频信号与C/A进行联合相干捕获,推导出了捕获灵敏度的计算式,实现了对两种信号的同时捕获。采用E1-C和C/A相干联合捕获算法,仅利用E1的导频信号E1-C和C/A进行捕获,简化了联合捕获的推导过程。仿真结果显示,两种联合捕获均比单独捕获E1或C/A的灵敏度高,为新一代GNSS接收机提供了新的卫星信号捕获方法。 相似文献
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为对比分析北斗三号(BDS-3)/Galileo相同频率伪距单点定位精度,基于MGEX(Multi-GNSS Experiment)分布的跟踪站实测数据,分析了BDS-3、Galileo以及BDS-3/Galileo单系统单频、双系统相同频率组合和非相同频率组合伪距单点定位精度.经研究发现,BDS-3/Galileo相... 相似文献
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论述GNSS多系统融合定位的数学模型、分析各项误差处理策略以及参数估计方法,基于日本东京海洋大学RTKLIB软件进行GPS、GLONASS、Galileo、BDS多系统融合定位试验,并分析其动/静态定位稳定性和精度。试验结果表明:GNSS多系统融合收敛时间与GPS单系统相比缩短30%~50%,定位精度与GPS单系统相比可以提高20%~50%。此外,在卫星高度截止角大于40°和不利观测环境条件下,单系统可见卫星数不足,从而导致无法进行连续定位,但多系统融合可视卫星可获得比较好的定位精度,在建筑物密集区、山区和卫星遮挡较为严重的恶劣条件下具有实际应用价值。 相似文献
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