FDTD analysis of HF heating effect on local ionosphere

Ye Zhou, Yi Wang, Q. Cao
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引用次数: 1

Abstract

An auxiliary differential equation (ADE) finite-difference time-domain (FDTD) method is applied to analyze the effect of ionospheric high frequency (HF) heating on electromagnetic (EM) wave propagation. First ionosphere background parameters in East China generated from IRI are introduced in the study model and nonlinear phenomenon during ionospheric heating process at low altitude between 60 and 120km is simulated. Then vertical distribution of electron temperature in initial and saturation condition is used to simulate the EM wave propagation in the ionosphere. During the simulation, an ADE plasma model is employed to simulate the dispersive characteristics of the ionosphere. The simulation result shows that the ionospheric heating has a direct influence on the echo wave.
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高频加热对局部电离层影响的FDTD分析
采用辅助微分方程时域有限差分(FDTD)方法分析了电离层高频加热对电磁波传播的影响。首先在研究模型中引入IRI生成的华东地区电离层背景参数,模拟了60 ~ 120km低空电离层加热过程中的非线性现象。然后利用初始状态和饱和状态下电子温度的垂直分布来模拟电磁波在电离层中的传播。在模拟过程中,采用ADE等离子体模型模拟电离层的色散特性。仿真结果表明,电离层加热对回波有直接影响。
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