使用 SDR 接收器的基于 PLL 的多普勒方法,用于调查电离层中的致震干扰和人为干扰

Nazyf Salikhov, A. Shepetov, G. Pak, Vladimir Saveliev, Serik Nurakynov, Vladimir Ryabov, Valery Zhukov
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引用次数: 0

摘要

文章详细介绍了在倾斜无线电路径上测量多普勒频移(DFS)的设备和方法,该方法基于锁相环原理,使用 SDR 接收器,用于调查电离层中的地震和人为干扰。在尼泊尔(2015 年 4 月 25 日)和土耳其(2023 年 2 月 6 日)发生两次 M7.8 级地震期间,多普勒电离层探测仪探测到了电离层中的共震和震前效应,这些效应的出现与地震扰动从岩石圈到电离层的各种传播机制有关。在尼泊尔地震发生前一天和主震发生前 90 分钟,检测到多普勒脉冲强度增加,这反映了电离层的扰动。根据对电离层信号的 DFS 以及岩石底土层和地面大气中伽马射线通量的全面监测,追踪了岩石圈-大气层-电离层耦合系统中地球物理相互作用的通道。对塞米巴拉金斯克试验场地下核爆炸期间电离层信号的 DFS 记录进行的回顾性分析证实了岩石圈-大气层-电离层耦合的概念,其中大气边界层的电离起着关键作用。从多普勒图中获得了一个重建声脉冲速度剖面的简单公式,它只取决于两个参数,一个是长度维度,另一个是时间维度。本文介绍了两次地下核爆炸声脉冲的重建剖面图,这些声脉冲达到了探测无线电波反射点的高度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A PLL-Based Doppler Method Using an SDR-Receiver for Investigation of Seismogenic and Man-Made Disturbances in the Ionosphere
The article describes in detail the equipment and method for measuring the Doppler frequency shift (DFS) on an inclined radio path, based on the principle of the phase-locked loop using an SDR receiver for the investigation of seismogenic and man-made disturbances in the ionosphere. During the two M7.8 earthquakes in Nepal (25 April 2015) and Turkey (6 February 2023), a Doppler ionosonde detected co-seismic and pre-seismic effects in the ionosphere, the appearances of which are connected with the various propagation mechanisms of seismogenic disturbance from the lithosphere up to the ionosphere. One day before the earthquake in Nepal and 90 min prior to the main shock, an increase in the intensity of Doppler bursts was detected, which reflected the disturbance of the ionosphere. A channel of geophysical interaction in the system of lithosphere–atmosphere–ionosphere coupling was traced based on the comprehensive monitoring of the DFS of the ionospheric signal, as well as of the flux of gamma rays in subsoil layers of rocks and in the ground-level atmosphere. The concept of lithosphere–atmosphere–ionosphere coupling, where the key role is assigned to ionization of the atmospheric boundary layer, was confirmed by a retrospective analysis of the DFS records of an ionospheric signal made during underground nuclear explosions at the Semipalatinsk test site. A simple formula for reconstructing the velocity profile of the acoustic pulse from a Dopplerogram was obtained, which depends on only two parameters, one of which is the dimension of length and the other the dimension of time. The reconstructed profiles of the acoustic pulses from the two underground nuclear explosions, which reached the height of the reflection point of the sounding radio wave, are presented.
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