1.陕西科技大学电子信息与人工智能学院,陕西西安 710021
2.空军工程大学航空航天工程学院,陕西西安 710038
[ "周丽丽 女,1981年生,江苏连云港人.陕西科技大学电子信息与人工智能学院副教授、博士生导师.主要研究方向为电磁理论及电磁场数值计算、无线接收与抗干扰技术、图像处理技术.E-mail: zhoulili@sust.edu.cn" ]
[ "郑悦 女,1999年生,吉林洮南人.陕西科技大学电子信息与人工智能学院硕士研究生.主要研究方向为电磁理论及电磁场数值计算.E-mail: 3128578831@qq.com" ]
收稿:2022-01-24,
修回:2022-06-27,
纸质出版:2023-07-25
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周丽丽,郑悦,穆中林等.昼夜过渡区低频一跳天波中不同模式区分及特性分析[J].电子学报,2023,51(07):1964-1969.
ZHOU Li-li,ZHENG Yue,MU Zhong-lin,et al.Distinction and Characteristic Analysis of Different Modes of Low-Frequency One-Hop Sky Wave in the Day-Night Transition Area[J].ACTA ELECTRONICA SINICA,2023,51(07):1964-1969.
周丽丽,郑悦,穆中林等.昼夜过渡区低频一跳天波中不同模式区分及特性分析[J].电子学报,2023,51(07):1964-1969. DOI: 10.12263/DZXB.20220659.
ZHOU Li-li,ZHENG Yue,MU Zhong-lin,et al.Distinction and Characteristic Analysis of Different Modes of Low-Frequency One-Hop Sky Wave in the Day-Night Transition Area[J].ACTA ELECTRONICA SINICA,2023,51(07):1964-1969. DOI: 10.12263/DZXB.20220659.
昼夜混合路径条件下低频天波传播特性的研究对导航授时系统中应用模式拓展及低电离层参数反演均具有重要的研究意义.本文以地—电离层中100 kHz载频罗兰-C信号的时域有限差分(Finite Difference Time Domain,FDTD)仿真为前提,基于传统的过零检测和快速傅里叶变换(Fast Fourier Transform,FFT)/逆快速傅里叶变换(Inverse Fast Fourier Transform,IFFT)频谱相除算法,对昼夜混合信道(传播路径为东西取向)中地面接收的一跳天波进行模式区分及特性分析.给出了在白天至夜晚、夜晚至白天两种突变电离层下罗兰-C一跳天波中不同模式随收发距离的变化规律,同时给出了模式干涉区域优势场量的分布情况.结果表明,对于昼夜混合模型,一跳天波中存在来自不同高度及昼夜突跳边界反射的多种模式,基于传统方法检测的幅度相位存在不稳定干涉效应,模式界定困难,而基于FFT/IFFT频谱相除算法能够将主要模式进行细化区分,从而获得更高精度、更平稳的模式特性.
It is of great significance to study the propagation characteristics of low-frequency sky waves under the condition of day-night mixed paths for the application of navigation and time service systems and the inversion of low ionosphere parameters. Based on the finite difference time domain (FDTD) simulation of Loran-C signal (carrier frequency: 100 kHz) in the day-night mixed Earth-ionosphere waveguide
this paper uses the traditional zero crossing detection and the fast Fourier transform/inverse fast Fourier transform (FFT/IFFT) spectrum division methods to distinguish the different modes of one-hop sky waves received on the ground in the mixed channel (assuming the propagation path is east-west orientation)
and analyzes the propagation characteristics of the main modes. The propagation characteristics of different modes in one-hop Loran-C sky waves are given under two mixed ionosphere conditions
i.e. from day to night and from night to day. At the same time
the distribution of the dominant field in the mode interference region is given. The results show that for the diurnal mixed path
there are multiple reflection modes from the ionosphere at different heights and its abrupt boundary. The amplitude and phase detected by the traditional method have unstable interference effect
and it is difficult to distinguish the modes. However
the FFT/IFFT spectral division algorithms can refine and distinguish the main modes
so as to obtain more stable and accurate mode features.
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