Effective subtraction technique: implementation for Irkutsk Incoherent Scatter Radar

IF 0.9 Q4 GEOCHEMISTRY & GEOPHYSICS
V. Tashlykov, S. Alsatkin, Andrey Medvedev, Konstantin Ratovsky
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引用次数: 0

Abstract

For incoherent scatter measurements, the effective subtraction technique is to alternate the duration of amplitude-modulated signals between a pair of consequently radiated pulses. The resulting gain of spatial resolution enables us to steadily assess the electron density profile by the Faraday rotation method. The paper describes the electron density measurement technique, which involves analyzing narrow-band signals from Irkutsk Incoherent Scatter Radar, and proposes an automated method of determining the electron density for the problem in which the convolution of the radiated signal waveform with backscatter signal cannot be neglected. The inverse problem of electron density recovery is considered as a standard nonlinear optimization problem, which is solved using the algorithms for global and local optimization applied consequently. We compare the electron density profiles obtained by analyzing different pulse waveforms and from Irkutsk ionosonde data.
有效减法技术:在伊尔库茨克非相干散射雷达上的应用
对于非相干散射测量,有效的减法技术是在一对相应的辐射脉冲之间交替使用调幅信号的持续时间。由此获得的空间分辨率使我们能够通过法拉第旋转法稳定地评估电子密度曲线。论文介绍了电子密度测量技术,包括分析伊尔库茨克非相干散射雷达的窄带信号,并针对辐射信号波形与反向散射信号的卷积无法忽略的问题,提出了一种自动确定电子密度的方法。电子密度恢复的逆问题被视为一个标准的非线性优化问题,可以使用相应的全局和局部优化算法来解决。我们比较了通过分析不同脉冲波形和伊尔库茨克电离层探测仪数据得到的电子密度剖面图。
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来源期刊
Solar-Terrestrial Physics
Solar-Terrestrial Physics GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.50
自引率
9.10%
发文量
38
审稿时长
12 weeks
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