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Identification of Low and High Ionospheric Rays by a Direct Variational Method

机译:直接变分法识别低和高电离层射线

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Direct optimization of the optical path functional is a promising approach to the point-to-point ionospheric ray tracing problem. The approach involves a systematic transformation of the ray trajectory to an optimal configuration satisfying the Fermat's principle, while the endpoints are kept fixed according to the boundary conditions. Here, a strategy is proposed for the identification of both high and low rays using a direct variational approach. High rays are obtained by minimizing the optical path of ionospheric radio rays. Low rays which correspond to saddle points of the optical path are found using the minimum mode following method, where the saddle points are essentially converted to local minima. The method is applied to a point-to-point ionospheric ray tracing, where the propagation medium is obtained with the International Reference Ionosphere model.
机译:直接优化光路功能是解决点对点电离层射线追踪问题的有前途的方法。该方法涉及将射线轨迹系统转换为满足费马原理的最佳配置,同时根据边界条件将端点保持固定。在这里,提出了一种使用直接变分方法识别高低光线的策略。通过最小化电离层无线电射线的光路来获得高射线。使用最小模式跟随方法找到对应于光路鞍点的低光线,其中,鞍点实质上被转换为局部最小值。该方法适用于点对点电离层射线追踪,其中传播介质是使用国际参考电离层模型获得的。

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