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基于“北斗”差分的双基SAR高精度时频同步方法 被引量:1
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作者 班亚龙 李沛洲 +1 位作者 康荣雷 常军 《电讯技术》 北大核心 2024年第7期1095-1101,共7页
为了满足分布式平台协同探测和双基地合成孔径雷达(Synthetic Aperture Radar,SAR)目标成像对时频同步的高精度应用需求,提出了一种基于“北斗”导航卫星观测单差的时频同步方法。该方法基于伪距单差计算得到平台间的相对钟差,并通过载... 为了满足分布式平台协同探测和双基地合成孔径雷达(Synthetic Aperture Radar,SAR)目标成像对时频同步的高精度应用需求,提出了一种基于“北斗”导航卫星观测单差的时频同步方法。该方法基于伪距单差计算得到平台间的相对钟差,并通过载波相位观测单差的前后历元差消除单差整周模糊度,计算得到相对频率误差。静态实测和动态模拟测试结果表明,该方法可以实现固定时间同步误差优于5 ns,线性时间同步误差优于2×10^(-3)ns/s,二次时间同步误差优于10^(-6)ns/s^(2),固定频率同步误差优于0.01 Hz,线性频率同步误差优于10^(-5)Hz/s的精度,满足实际工程应用的要求。在该时频同步方法的基础上,开展了双基SAR目标成像质量仿真分析,验证了算法的可用性,可以保证分布式协同系统的动态、实时和高精度时频同步应用。 展开更多
关键词 双基SAR 时频同步 “北斗”差分 分布式协同
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The wide-area difference system for the regional satellite navigation system of COMPASS 被引量:21
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作者 CAO YueLing HU XiaoGong +6 位作者 WU Bin ZHOU ShanShi LIU Li SU RanRan CHANG ZhiQiao HE Feng ZHOU JianHua 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第7期1307-1315,共9页
The regional satellite navigation system of COMPASS (Phase I) provides both open services and authorized services. Authorized services offer differential corrections and integrity information to users to support highe... The regional satellite navigation system of COMPASS (Phase I) provides both open services and authorized services. Authorized services offer differential corrections and integrity information to users to support higher positioning, navigation and timing precision. Experimenting with real data, positioning accuracy is estimated with a 3GEO/4IGSO COMPASS constellation. The results show that with dual-frequency and single-frequency pseudo-range measurements, the positioning errors are respectively 8 and 10 m (RMS) for open service users, while for authorized users, the errors are 4 and 5 m (RMS), respectively. The COMPASS constellation geometry may cause large error to occur in the height component by 7-9 m for dualor single-frequency users, which can be effectively reduced with the differential corrections supplied by the authorized services. Multipath errors are identified and corrected for COMPASS, resulting in 25% positioning accuracy improvement for dual-frequency users and 10% improvement for single-frequency users. 展开更多
关键词 COMPASS equivalent satellite clock error ionospheric grid multipath error positioning error
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Analysis of RDSS positioning accuracy based on RNSS wide area differential technique 被引量:8
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作者 XING Nan SU RanRan +8 位作者 ZHOU JianHua HU XiaoGong GONG XiuQiang LIU Li HE Feng GUO Rui REN Hui HU GuangMing ZHANG Lei 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第10期1995-2001,共7页
The BeiDou Navigation Satellite System(BDS) provides Radio Navigation Service System(RNSS) as well as Radio Determination Service System(RDSS).RDSS users can obtain positioning by responding the Master Control Center(... The BeiDou Navigation Satellite System(BDS) provides Radio Navigation Service System(RNSS) as well as Radio Determination Service System(RDSS).RDSS users can obtain positioning by responding the Master Control Center(MCC) inquiries to signal transmitted via GEO satellite transponder.The positioning result can be calculated with elevation constraint by MCC.The primary error sources affecting the RDSS positioning accuracy are the RDSS signal transceiver delay,atmospheric trans-mission delay and GEO satellite position error.During GEO orbit maneuver,poor orbit forecast accuracy significantly impacts RDSS services.A real-time 3-D orbital correction method based on wide-area differential technique is raised to correct the orbital error.Results from the observation shows that the method can successfully improve positioning precision during orbital maneuver,independent from the RDSS reference station.This improvement can reach 50% in maximum.Accurate calibration of the RDSS signal transceiver delay precision and digital elevation map may have a critical role in high precise RDSS positioning services. 展开更多
关键词 BeiDou Navigation Satellite System (BDS) RDSS RNSS wide-area differential technique
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