利用三维数值射线追踪模拟GPS无线电掩星

R. Norman, J. Marshall, Chuan-Sheng Wang, B. Carter, Y. Li, S. Gordon, Kefei Zhang
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引用次数: 1

摘要

光线追踪是GPS l波段频率信号传播操作的重要工具;特别是GPS RO技术,通常需要精确和接近实时的结果。射线追踪技术通常用于计算电磁信号在由位置相关折射率指定的介质中的路径,例如地球的大气层。本研究采用三维数值射线追踪技术模拟近地轨道卫星接收到的GPS l波段信号,主要集中在电子密度梯度增大的区域,如赤道异常。研究了GPS到LEO信号路径的下程折射率梯度。由于地球磁场的存在,电离层是一种双折射介质。研究了地磁场对发射信号的影响以及普通信号和特殊信号的路径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulating GPS Radio Occultations using 3-D numerical ray tracing
Ray tracing is an important tool for the operation of GPS L-band frequency signal propagation; in particular GPS RO techniques where accurate and near real-time results are often required. Ray tracing techniques are commonly used for calculating the path of an electromagnetic signal in a medium specified by a position dependent refractive index, such as the Earth's atmosphere. In this study three dimensional numerical ray tracing techniques are used to simulate GPS L-band signals received by the LEO satellites and primarily focusing on regions of increased electron density gradients such as the equatorial anomaly. The down range refractive gradients on the GPS to LEO signal paths will be investigated. The ionosphere is a birefringent medium due to the presence of the Earth's magnetic field. The effects of the Earth's magnetic field on the transmitted signals and the paths of the ordinary and extraordinary signals are investigated.
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