Ionosphere fitting method and path parameters analysis
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摘要: 针对多层电离层,采用反抛物层作为连接层来描述电离层之间区域的电子密度分布.以电子密度和其相对于高度的一阶偏导数连续为依据,拟合出连接层的临界频率、半厚度和底高等电离层参数.将电离层的准抛物模型和连接层的反抛物模型中计算出来的等离子频率代入Appleton-Hartree公式和Snell定理,结合射线的几何结构完成多层电离层中的射线追踪,同时计算群路径、相路径和传输距离这3种重要的路径参数.分析当给定频率时,路径参数与入射角之间的关系,群路径、相路径与传输距离之间的关系,频率对路径参数之间变化关系的影响;同时分析了给定入射角时,路径参数与射线工作频率之间关系和入射角对于路径参数之间变化关系的影响.Abstract: Anti-parabolic model that function as the joint layer was adopted to describe the electron density distribution between the quasi-parabolic multi-lays in ionosphere. The parameters of the anti-parabolic layer, such as critical frequency, semi thickness and the layer bottom radial distance from earth-s center, were calculated on the basis of the continuous electron density distribution and its continuous derivative. The plasma frequency calculated in the quasi-parabolic model or anti-parabolic model was substituted into Appleton-Hartree formula and Snell theorem to calculate the ray trace with the help of ray geometry in the ionosphere. The three important path parameters which are the ground range, group path and phase path were calculated on this multi-layer ionosphere model with the joint layer. The relationship between the path parameters, which is influenced by the angle of incidence and the working frequency, was analyzed. The relationship between the path parameters and the angle of incidence or the working frequency was analyzed too.
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Key words:
- ionosphere /
- joints /
- plasma density /
- ray tracing /
- parameter estimation
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