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低电离层调制激励VLF/ELF辐射参数优化理论分析

本站小编 Free考研考试/2022-01-03

杨巨涛1,2,,
李清亮2,
郝书吉2,
王建国1,3
1. 西安交通大学电子与信息工程学院, 西安 710049
2. 电波环境特性及模化技术重点实验室, 青岛 266107
3. 西北核技术研究所, 西安 710024

基金项目: 中国电科技术创新基金(A171601C01)资助


详细信息
作者简介: 杨巨涛, 男, 1982年生, 西安交通大学电子科学与技术专业博士生, 中国电波传播研究所高级工程师, 主要从事电波传播、电离层人工扰动等方面的研究.E-mail:yyjt521@126.com
中图分类号: P352

收稿日期:2017-03-19
修回日期:2017-05-03
上线日期:2018-02-05



Theoretical analysis of parameter optimization for lower-ionosphere modulated excitation VLF/ELF waves

YANG JuTao1,2,,
LI QingLiang2,
HAO ShuJi2,
WANG JianGuo1,3
1. School of Electronic and Information Engineering, Xi'an Jiaotong University, Xi'an 710049, China
2. National Key Laboratory of Electromagnetic Environment, Qingdao 266107, China
3. Northwest Institute of Nuclear Technology, Xi'an 710024, China


MSC: P352

--> Received Date: 19 March 2017
Revised Date: 03 May 2017
Available Online: 05 February 2018


摘要
针对低电离层幅度调制加热过程中甚低频/极低频(VLF/ELF)激发效率较低的问题,该文利用低电离层调制加热模型分析方波幅度调制加热过程中占空比和加热频率对VLF/ELF辐射效率的影响,在此基础上获得最大VLF/ELF辐射效率下的优化占空比和加热频率选择范围.研究表明,随着调制波占空比的增大,激发的VLF/ELF等效辐射源强度先增大后减小,占空比的优化范围为40%~70%;随着加热频率的增大,激发的VLF/ELF等效辐射源强度先增大后减小,加热频率的优化范围为(0.8~0.9)倍低电离层临界频率.
幅度调制加热/
参数优化/
占空比/
加热频率

In order to improve the radiation efficiency of VLF/ELF in amplitude modulated ionospheric heating experiments, taking the square wave AM heating for example, the duty cycle and heating frequency, which have an significant effect on VLF/ELF radiation efficiency, are analyzed and discussed by using the lower-ionosphere modulated heating model. Based on the numerical simulation, the ranges of parameter selection of optimal duty cycle and the heating frequency are derived. The result shows that the intensity of the VLF/ELF equivalent radiation source firstly increases and then decreases with increase of the modulated duty cycle and heating frequency. The optimal duty cycle varies between 40% and 70%, and the optimized heating frequency is 0.8~0.9 times the critical frequency of the lower-ionosphere.
Amplitude-modulate heating/
Parameter optimization/
Duty ratio/
Heating frequency



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