共查询到20条相似文献,搜索用时 109 毫秒
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实现了BDS/GPS/GLONASS三系统组合RTK定位算法,介绍了BDS/GPS/GLONASS三系统组合RTK数学模型,解决了多模融合导航定位时空基准统一问题,并针对附加模糊度参数的卡尔曼滤波函数模型,提出了一种确定实时动态定位中卡尔曼滤波参数的方法。编制了BDS/GPS/GLONASS RTK定位程序,并对28 m超短基线及31 km短基线实测数据进行了解算。对比分析了BDS、GPS、GLONASS、BDS/GPS、BDS/GLONASS、GPS/GLONASS、BDS/GPS/GLONASS七种模式下的定位结果。 相似文献
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董玉刚 《测绘与空间地理信息》2016,(9):98-101
介绍了GPS/GLONASS定位系统发展状况,在分析GPS单点定位数学模型的基础上,研究了GPS/GLONASS组合系统伪距单点定位的数学模型,编程实现了GPS/GLONASS组合系统伪距单点定位程序。分别比较GPS单系统、GLONASS单系统与GPS/GLONASS组合系统单天6 h伪距单点定位精度,结果表明,组合系统单点定位精度优于GPS单系统与GLONASS单系统结果。 相似文献
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GPS/GLONASS组合导航中的数据融合 总被引:1,自引:0,他引:1
针对GPS/GLONASS组合导航中的时间系统与坐标系统不统一问题,本文分析了GLONASS卫星的广播星历格式、简化受力模型和星历计算方法,并给出了GPS/GLONASS组合导航的数据融合模型。 相似文献
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GPS/GLONASS组合载波相位测量,在快速静态和动态定位等方面的应用具有一定的优势.由于GLONASS采用频分多址的方式识别卫星,每颗卫星的载波频率各不相同,所以在载波测量数据处理中不能采用与GPS载波相位测量数据处理相同的方法.文中就GLONASS、GPS/GLONASS组合载波相位测量整周模糊度解算的基本思路和方法进行了介绍. 相似文献
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GPS/GLONASS组合精密单点定位研究 总被引:5,自引:2,他引:3
讨论了GPS/GLONASS组合精密单点定位的数学模型,并以IRKJ跟踪站的观测数据为例,分别利用GPS和GPS/GLONASS组合两种方式进行精密单点定位解算。计算结果表明,当GPS观测卫星数较多(9~10颗)时,组合GPS/GLONASS较单系统GPS的精密单点定位精度及收敛速度有一定改善,但效果不明显。当GPS卫星数较少(4~5颗)时,引入GLONASS卫星进行GPS/GLONASS组合精密单点定位,其定位精度及收敛速度较单系统GPS精密单点均有显著改善。 相似文献
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为了改善传统GPS/GLONASS组合精密单点定位的法方程,推导了一种基于等价消参法的融合法方程。该融合法方程是由GPS系统的法方程和GLONASS系统的法方程进行消除参数叠加得到,既易于实现GPS/GLONASS系统组合单点定位,也便于进行单系统定位的切换。理论证明,基于等价消参法的融合法方程和传统的组合法方程是等价的。程序设计和算例分析显示,基于等价消参法的融合法方程在GPS/GLONASS组合系统精密单点定位和单系统定位转换方面比传统的组合法方程具有更高的效率。最后,利用实测算例分析了GPS/GLONASS组合精密单点定位的定位精度。 相似文献
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组合GPS/GLONASS精密定位的观测值随机模型 总被引:1,自引:0,他引:1
为了获得组合GPS/GLONASS精密定位结果,该文从理论和数值实例两方面分析了研究组合GPS/GLONASS观测值随机模型的重要性,提出了两种利用观测值的误差残差估计随机模型的方法,即验后估计法和方差-协方差迭代法。理论和数值结果表明,这两种随机模型估计方法与采用经验随机模型相比,可以提高整周模糊度解算的可靠性和定位精度,所提出的观测值随机模型估计方法理论上更严格,实践上可行,并建议采用方差-协方差迭代法估计组合GPS/GLONASS精密定位的观测值随机模型。 相似文献
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论文介绍了GPS/GLONASS组合静态相位相对定位模型,将GLONASS双差观测方程的模糊度参数表示成参考卫星的单差模糊度和双差模糊度参数;用误差分析法证明了单差模糊度按实参数估计不影响基线解算精度,而GLONASS双差模糊度必须按整参数进行解算;用Helmert方差分量估计确定GPS和GLONASS观测值的合理权比。实际观测数据处理结果表明:GPS/GLONASS组合定位较单一系统解算的基线精度均有提高,尤其比GLONASS单系统的解算精度有显著提高,比GPS单系统的精度也有适当提高,其中单历元基线解算精度约提高了10%,当单一系统的可用卫星数少于4颗时,GPS/GLONASS组合定位更具有应用价值。 相似文献
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多星座组合定位可以提升导航定位性能,但不同星座观测量组合时需要考虑合适的随机模型.传统方法是根据经验直接设定各系统的等价权重,但会导致随机模型确定不精确,从而影响组合系统的性能提升.将Helmert方差分量估计方法应用于GPS/GLONASS/BDS/Galileo组合精密单点定位(PPP)中,以自适应确定各系统间权比.采用国际GNSS服务(IGS)MGEX(Multi-GNSS Experiment)观测网的10个测站一周的观测数据进行静态和仿动态试验.结果表明:采用Helmert方差分量估计定权方法可显著提高GPS/GLONASS/BDS/Galileo组合PPP的收敛速度,与等权定权方案比较,静态模式下平均提高52%,仿动态模式下平均提高64%.因定位精度主要由载波相位观测值精度和误差修正水平决定,在静态和仿动态测试中Helmert方差分量估计方法对定位精度没有明显改善. 相似文献
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在对GPS/GLONASS组合定位的周跳探测和修复方法进行深入研究的基础上,论述了适合于两种数据联合解算的GPS/GLONASS模糊度迭代处理方法及相应的基于FARA方法的整周模糊度固定方法。在现有BERNESE Ver4.0GSP数据处理软件的基础上,增加及改进了其中的若干模块,从而研制出组合定位系统高精度数据处理软件,并进行了试验计算。结果表明,所开发的组合定位系统数据处理软件内、外符合精度均达到mm级,证明了这种高精度相对定位理论、方法、软件的正确性和可行性。 相似文献
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The potential 48-satellite constellation offered by the combination of observations from both the GPS and GLONASS positioning
systems has created considerable interest among existing GPS users. In the published literature, a considerable amount of
work has been devoted to the theoretical issue of algorithm design for combined GPS/GLONASS positioning solutions. Little
work has been published, however, on the practical conversion of existing GPS software to include GLONASS observations. This
paper considers the computation issues pertaining to the GLONASS broadcast ephemeris for inclusion of GLONASS observations
into existing GPS software. The format of the GLONASS broadcast ephemeris is discussed and theory of satellite orbits and
their stepwise numerical integration is reviewed. Finally, a strategy for GLONASS broadcast ephemeris computation is proposed
to facilitate combination of GPS and GLONASS observations. ? 1998 John Wiley & Sons, Inc. 相似文献
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Estimation and evaluation of real-time precipitable water vapor from GLONASS and GPS 总被引:1,自引:0,他引:1
Cuixian Lu Xingxing Li Maorong Ge Robert Heinkelmann Tobias Nilsson Benedikt Soja Galina Dick Harald Schuh 《GPS Solutions》2016,20(4):703-713
The revitalized Russian GLONASS system provides new potential for real-time retrieval of zenith tropospheric delays (ZTD) and precipitable water vapor (PWV) in order to support time-critical meteorological applications such as nowcasting or severe weather event monitoring. In this study, we develop a method of real-time ZTD/PWV retrieval based on GLONASS and/or GPS observations. The performance of ZTD and PWV derived from GLONASS data using real-time precise point positioning (PPP) technique is carefully investigated and evaluated. The potential of combining GLONASS and GPS data for ZTD/PWV retrieving is assessed as well. The GLONASS and GPS observations of about half a year for 80 globally distributed stations from the IGS (International GNSS Service) network are processed. The results show that the real-time GLONASS ZTD series agree quite well with the GPS ZTD series in general: the RMS of ZTD differences is about 8 mm (about 1.2 mm in PWV). Furthermore, for an inter-technique validation, the real-time ZTD estimated from GLONASS-only, GPS-only, and the GPS/GLONASS combined solutions are compared with those derived from very long baseline interferometry (VLBI) at colocated GNSS/VLBI stations. The comparison shows that GLONASS can contribute to real-time meteorological applications, with almost the same accuracy as GPS. More accurate and reliable water vapor values, about 1.5–2.3 mm in PWV, can be achieved when GLONASS observations are combined with the GPS ones in the real-time PPP data processing. The comparison with radiosonde data further confirms the performance of GLONASS-derived real-time PWV and the benefit of adding GLONASS to stand-alone GPS processing. 相似文献
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A combination of GPS and GLONASS observations can offer improved reliability, availability and accuracy for precise point positioning (PPP). We present and analyze a combined GPS/GLONASS PPP model, including both functional and stochastic components. Numerical comparison and analysis are conducted with respect to PPP based on only GPS or GLONASS observations to demonstrate the benefits of the combined GPS/GLONASS PPP. The observation residuals are analyzed for more appropriate stochastic modeling for observations from different navigation systems. An analysis is also made using different precise orbit and clock products. The performance of the combined GPS/GLONASS PPP is assessed using both static and kinematic data. The results indicate that the convergence time can be significantly reduced with the addition of GLONASS data. The positioning accuracy, however, is not significantly improved by adding GLONASS data if there is a sufficient number of GPS satellites with good geometry. 相似文献
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ZHANG Yongjun LIU Jingnan 《地球空间信息科学学报》2002,5(4):32-36
To obtain the GLONASS satellite position at an epoch other than reference time,the satellite‘s equation of motion has to be integrated with broadcasting ephemerides.The iterative detecting and repairing method of cycle slips based on triple difference residuals for combined GPS/GLONASS positioning and the iterative ambiguity resolution approach suitable for combined post processing positioning are discussed systematically.Experiments show that millimter accuracy can be achieved in short baselines with a few hours‘ dual frequency or even single frequency GPS/GLONASS carrier phase observation,and the precision of dual frequency observations is distinctly higher than that of single frequency observations. 相似文献
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从信噪比、伪距残差、相位残差等方面对开阔环境下的静态谷歌Nexus 9智能平板终端的原始全球导航卫星系统(Global Navigation Satellite System,GNSS)观测数据质量进行了分析评估,结果表明,Nexus 9平板的全球定位系统(Global Positioning System,GPS)、GLONASS观测值的信噪比比测量型接收机低10 dBHz左右;伪距精度分别为5.43 m、11.39 m,相位精度分别为4.44 mm、4.99 mm;相对于高度角来说,信噪比与伪距残差的相关性更强,更能反映观测数据的质量。在此基础上给出了信噪比定权的随机模型,并进行了开阔环境下的伪距单点定位测试。实验结果表明,基于信噪比定权的单点定位平面精度为2.74 m,高程精度为4.56m,比高度角定权精度提高了约26%。 相似文献
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Zhang Yongjun 《地球空间信息科学学报》2013,16(4):32-36
To obtain the GLONASS satellite position at an epoch other than reference time, the satellite's equation of motion has to be integrated with broadcasting ephemerides. The iterative detecting and repairing method of cycle slips based on triple difference residuals for combined GPS/GLONASS positioning and the iterative ambiguity resolution approach suitable for combined post processing positioning are discussed systematically. Experiments show that millimeter accuracy can be achieved in short baselines with a few hours' dual frequency or even single frequency GPS/GLONASS carrier phase observations, and the precision of dual frequency observations is distinctly higher than that of single frequency observations. 相似文献