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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Development and error analysis of nonlinear ionospheric removal algorithm for ionospheric electron density determination using broadband RF data
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Development and error analysis of nonlinear ionospheric removal algorithm for ionospheric electron density determination using broadband RF data

机译:利用宽带射频数据确定电离层电子密度的非线性电离层去除算法的开发和误差分析

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摘要

The first documented, empirical comparisons are provided of four methods to retrieve total electron content (TEC) that use broadband, impulsive events detected by satellite in the lower very high frequency range (20-150 MHz). The four TEC retrieval methods are the quasi-longitudinal approximation (i.e., Taylor expansion) of the Appleton-Hartree (A-H) dispersion relation to the first and second orders, as well as the nonlinear ionospheric removal algorithm (NIRA) that utilizes the A-H dispersion equation directly to model the propagation of an electromagnetic wave through the ionosphere. NIRA solves not only for TEC between the ground source and satellite, but also for higher-order ionospheric terms, such as electron density, ionospheric thickness, and angle between wave vector and magnetic field. Regimes of validity for each TEC retrieval method are analyzed by comparison of the parameters retrieved from synthetic data with a known ionosphere and from RF FORTE satellite data measurements of a ground-based broadband transmitter. Results include a comparison between TEC and infinite frequency time of arrival (to) determined by NIRA and determined by using the first- and second-order terms from the Taylor expansion of the A-H equation. Plasma density, ionospheric thickness, and angle between magnetic field and wave vector as determined by the two NIRA methods are also compared.
机译:提供了第一个有记录的经验比较,提供了四种检索总电子含量(TEC)的方法,这些方法使用宽带在较低甚高频范围(20-150 MHz)中检测到的脉冲事件。四种TEC检索方法是Appleton-Hartree(AH)色散关系与一阶和二阶的准纵向近似(即泰勒展开),以及利用AH色散的非线性电离层去除算法(NIRA)方程直接模拟电磁波通过电离层的传播。 NIRA不仅解决了地源与卫星之间的TEC,而且还解决了高阶电离层条件,例如电子密度,电离层厚度以及波矢与磁场之间的夹角。通过比较从合成数据与已知电离层以及从地面宽带发射器的RF FORTE卫星数据测量中检索到的参数,来分析每种TEC检索方法的有效期。结果包括TEC与由NIRA确定并通过使用A-H方程的泰勒展开式的一阶和二阶项确定的无限频率到达时间(to)之间的比较。还比较了两种NIRA方法确定的血浆密度,电离层厚度以及磁场和波矢之间的夹角。

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