Modeling ionospheric propagation of low frequency signals for remote sensing purposes using charge density profiles

E. D. Schmitter
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Abstract

The use of powerful low or very low frequency (LF/VLF) transmitter signals (mainly in the range 15–60 kHz) is a well established technique for remote sensing of the lower ionosphere. Standard tools for calculating the the world wide propagation conditions — like the Long Wave Propagation Capability (LWPC) code — usually rely on default procedures for modeling the day-night transition conditions that do not map reality sufficiently for modeling purposes, especially with regard to timing and shape of the terminators. We propose an improved method to cover with these problems by making use of the possibility to introduce charge density profiles into the LWPC that vary appropriately over the day-night cycle and additionally can model disturbances caused by forcing of the lower ionosphere from above (X-rays, particle precipitations) and below (atmospheric waves).
利用电荷密度剖面模拟遥感用低频信号的电离层传播
使用强大的低频或甚低频(LF/VLF)发射机信号(主要在15-60千赫范围内)是一种成熟的电离层低层遥感技术。计算世界范围内传播条件的标准工具-如长波传播能力(LWPC)代码-通常依赖于对昼夜转换条件进行建模的默认程序,这些程序不能充分映射现实以实现建模目的,特别是关于终端的时间和形状。我们提出了一种改进的方法来解决这些问题,方法是利用在LWPC中引入电荷密度分布的可能性,这些分布在昼夜周期中有适当的变化,并且可以模拟由上面(x射线,粒子降水)和下面(大气波)的较低电离层强迫引起的干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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