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Estimation of higher-order ionospheric errors in GNSS positioning using a realistic 3-D electron density model

机译:使用逼真的3D电子密度模型估算GNSS定位中的高阶电离层误差

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摘要

The accuracy of the positioning systems such as GPS, GLONASS or Galileo is heavily affected by the presence of the ionosphere. Ionosphere-free dual-frequency algorithms used for positioning applications remove most of the ionospheric error but do not take into account its higher-order terms. In addition, the raypaths and total electron content (TEC) are assumed to be the same for both frequencies. This leads to centimeter-level range errors that can cause millimeter-level errors in positioning. In this paper an accurate estimation of the higher-order ionospheric errors based on a realistic 3-D electron density model is presented. A numerical homing-in ray-tracing algorithm is implemented to rigorously calculate satellite to receiver ray trajectories. The numerical simulations performed showed that higher-order ionospheric residual range errors may reach several centimeters (up to 5 cm) at low and middle latitudes; however, at high latitudes they hardly exceed several millimeters (up to 1 cm).
机译:GPS,GLONASS或Galileo等定位系统的精度受电离层的影响很大。用于定位应用的无电离层双频算法消除了大部分电离层误差,但未考虑其高阶项。另外,假定两个频率的光路和总电子含量(TEC)相同。这会导致厘米级范围的误差,从而导致定位中毫米级的误差。在本文中,提出了基于实际的3-D电子密度模型的高阶电离层误差的准确估计。实现了数值归位射线追踪算法,以严格计算卫星到接收器的射线轨迹。进行的数值模拟表明,高纬度电离层残留距离误差在低纬度和中纬度可能达到几厘米(最大5厘米)。但是,在高纬度地区,它们几乎不会超过几毫米(最大1厘米)。

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  • 来源
    《Radio Science》 |2012年第4期|p.RS4008.1-RS4008.7|共7页
  • 作者单位

    Institute for Radio Astronomy, National Academy of Science of Ukraine, Kharkiv, Ukraine,Abdus Salam International Centre for Theoretical Physics, Trieste,Italy,Institute for Radio Astronomy,National Academy of Science of Ukraine, 4 Chervonopraporna St.,61002 Kharkiv, Ukraine;

    Abdus Salam International Centre for Theoretical Physics, Trieste,Italy;

    Abdus Salam International Centre for Theoretical Physics, Trieste,Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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