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首页> 外文期刊>Latvian Journal of Physics and Technical Sciences >GNSS RTK Performance Improvements using Galileo Satellite Signal
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GNSS RTK Performance Improvements using Galileo Satellite Signal

机译:GNSS使用伽利略卫星信号进行性能改进

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Two factors of the existing GNSS Real-Time Kinematic (RTK) positioning are as follows: distance-dependence and unreliable ambiguity resolution under bad observation conditions in cities or forests. Use of multi-frequency GNSS signals and systems could possibly redefine RTK services in LatPos, regionally and globally, and more redundant measurements from multiple satellite systems, such as NAVSTAR, Galileo, Glonass and BeiDou, can improve the performance of RTK measurement results in terms of accuracy, availability, reliability and time to fix. The benefits of multiple systems of GNSS services are as follows: 1) savings in the reference station infrastructure costs, and 2) improvement on RTK preciseness and reliability for the professional users. The paper aims at studying how the RTK system, using multiple satellite constellations, performs, adding Galileo signal measurements. Galileo measurements are observed using a field receiver and corrections received from LatPos base station network. Numerical analysis is performed using real-time corrections in field receivers, and results from collected RINEX data are compared by various computing schemes, such as L1/L2 and wide lane signals, NAVSTAR and NAVSTAR with Galileo measurements. The results have preliminary demonstrated the significant improvement using both GNSS satellite signals. Further improvements on the LatPos system have been introduced and the planned improvements shown.
机译:现有GNSS实时运动(RTK)定位的两个因素如下:在城市或森林的不良观察条件下依赖依赖性和不可靠的歧义分辨率。使用多频GNSS信号和系统可以在拉丁人,区域和全球范围内重新定义RTK服务,以及来自多个卫星系统的更多冗余测量,例如Navstar,Galileo,Glonass和Beidou,可以提高RTK测量结果的性能修复准确性,可用性,可靠性和时间。 GNSS服务的多个系统的好处如下:1)参考站基础设施成本节省,2)提高专业用户的RTK精确度和可靠性。本文旨在研究RTK系统如何使用多卫星星座,使用多个卫星星座执行,添加伽利略信号测量。使用从拉特皮斯基站网络接收的现场接收器和校正来观察Galileo测量。使用现场接收器中的实时校正来执行数值分析,并且通过各种计算方案进行比较来自收集的RINEX数据的结果,例如L1 / L2和宽车道信号,Navstar和Navstar,具有Galileo测量。结果初步证明了使用GNSS卫星信号的显着改进。已经引入了拉丁系统的进一步改进,并显示了计划的改进。

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