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    题名 作者 年代 出处 被引量
1Positioning accuracy assessment for the 4GEO/5IGSO/2MEO constellation of COMPASS显示文摘Determined to become a new member of the well-established GNSS family,COMPASS(or BeiDou-2) is developing its capabilities to provide high accuracy positioning services.Two positioning modes are investigated in this study to assess the positioning accuracy of COMPASS' 4GEO/5IGSO/2MEO constellation.Precise Point Positioning(PPP) for geodetic users and real-time positioning for common navigation users are utilized.To evaluate PPP accuracy,coordinate time series repeatability and discrepancies with GPS' precise positioning are computed.Experiments show that COMPASS PPP repeatability for the east,north and up components of a receiver within China's Mainland is better than 2 cm,2 cm and 5 cm,respectively.Apparent systematic offsets of several centimeters exist between COMPASS precise positioning and GPS precise positioning,indicating errors remaining in the treatments of COMPASS measurement and dynamic models and reference frame differences existing between two systems.For common positioning users,COMPASS provides both open and authorized services with rapid differential corrections and integrity information available to authorized users.Our assessment shows that in open service positioning accuracy of dual-frequency and single-frequency users is about 5 m and 6 m(RMS),respectively,which may be improved to about 3 m and 4 m(RMS) with the addition of differential corrections.Less accurate Signal In Space User Ranging Error(SIS URE) and Geometric Dilution of Precision(GDOP) contribute to the relatively inferior accuracy of COMPASS as compared to GPS.Since the deployment of the remaining 1 GEO and 2 MEO is not able to significantly improve GDOP,the performance gap could only be overcome either by the use of differential corrections or improvement of the SIS URE,or both.ZHOU ShanShi CAO YueLing ZHOU JianHua HU XiaoGong TANG ChengPan LIU Li GUO Rui HE Feng CHEN JunPing WU Bin 2012Science China(Physics,Mechanics & Astronomy)2012,55,12:31
2天基海洋目标信息感知与融合技术研究显示文摘天基信息网络海洋目标监视既要建立完善的天基海洋目标监视系统,更要研究面向海洋目标监视的多源卫星观测信息融合技术,提升海洋目标监视的广域搜索、精细识别、持续监视和快速响应能力。分析了海洋目标信息感知与融合中的海洋环境和海洋目标特点,在总结分析天基海洋目标信息感知与融合的发展历程和数据特点的基础上,提出了天基海洋目标信息感知与融合在平台网络、时空融合和信息融合等方面的技术突破途径和未来发展方向。何友 姚力波 2017武汉大学学报(信息科学版)2017,42,11:12
3基于北斗地球静止轨道卫星信号的目标成像研究显示文摘利用北斗导航卫星信号进行目标成像目前还处于研究和探索阶段,为此针对北斗卫星B1和B3频段信号的特点设计了利用北斗地球静止轨道(geostationary earth orbit,GEO)卫星进行目标成像的算法;并进行了基于点目标成像的仿真实验。实验比较了B1和B3信号的目标成像效果。仿真实验结果表明能够利用北斗B1和B3信号进行目标成像;而且B3信号的成像分辨率优于B1信号。最后通过现场实验对直达和反射信号进行了研究,验证了利用北斗GEO卫星B3信号对目标进行探测和分辨的可行性。陕娟 严颂华 裴博宇 陈能成 2017科学技术与工程2017,17,5:3
4北斗卫星导航系统中频信号的产生方法显示文摘北斗卫星中频信号在精确导航与授时、合成孔径成像等方面起着关键作用。通过对北斗卫星导航信号的特征进行分析,建立了北斗卫星中频信号的数学模型,并对该模型进行了仿真实现,进而研究了中频信号中路径延迟、噪声和多径干扰对原始北斗信号的影响。研究得到的信号数据可以为导航接收机和信号处理模块提供不同采样率的信号源码,通过这样的方法可以减少大量现场试验,缩短研发时间、降低成本。杨逢宇 江月松 张文娟 2013海军航空工程学院学报2013,28,5:2
5北斗卫星后向散射信号的星-星合成孔径成像系统:概念与可行性显示文摘该文提出了一种利用北斗卫星的后向散射信号形成的星-星双站合成孔径成像系统的概念,建立了该成像系统的北斗地球静止轨道卫星和地球同步轨道卫星以及地面站之间的几何模式,并依此模式和双站合成孔径雷达成像原理,从成像分辨率、信噪比、链路收支等性能参数论证了利用北斗卫星建立星-星双站合成孔径雷达对地成像观测的可行性,此外还提出了该系统在土壤湿度探测、地表演化的时空动力学特征研究、大气特性研究方面的遥感应用前景。王海洋 江月松 2012雷达学报(中英文)2012,1,2:2
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