Technique for Automatic Profiling of Underlying Surface Electric Parameters on the Very Low Frequencies Radio Path

A. A. Tipikin, V. A. Pakhotin, D. Potapov
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Abstract

Relevance. Information about the electrical characteristics of the underlying surface has a significant impact on the calculations results of the radio tracks energy parameters in the very low frequency band. Currently, various versions of developed digital maps can potentially improve the accuracy of calculations and simplify the operator's activities in the initial data input. However, the capabilities of digital cartography are not integrated into existing forecasting techniques. The purpose of the study is to reduce the number of manual operations during the forecasting of the radio tracks energy parameters in the very low frequency band by developing a technique that allows to automate the input of the underlying surface electrical parameters. Methods. In this study we used methods of mathematical statistics to choose the quantization levels of radio tracks electrical parameters rationally. We used an interpolation method with a given decimation coefficient to obtain an electrical characteristics profile that meets the requirements of the forecasting methodology. Result. We selected the levels and quantization intervals of the underlying surface electrical characteristics which are needed to obtain the horizontal profiles, using statistical estimates. Further, we performed interpolation with the «nearest neighbor» method with a given decimation coefficient to exclude areas with frequent changes in the profiling parameters values. The decimation coefficient relies on the condition that the smallest length of a homogeneous section should not be less than the wavelength. The developed technique is implemented in the Matlab modeling environment as a combination of scripts and auxiliary functions. We provided an example of the technique application as the forecasting the ground wave field strength on a heterogeneous track. The novelty lies in the development of an original technique that provides rational profiling of the underlying surface electrical conductivity and dielectric permittivity for the subsequent usage of the obtained data in the forecasting the radio tracks energy parameters in the very low frequency band. Practical significance. The developed technique makes it possible to reduce the operator load during the initial data input and increases the accuracy of presenting this data. The technique can be used in a wavehop method for the predicting the radio tracks energy parameters to determine the vector sum of spatial and ground waves at the receiver.
在甚低频无线电路径上自动剖析底层表面电参数的技术
相关性。底层表面的电特性信息对极低频段无线电轨道能量参数的计算结果有重大影响。目前,各种版本的已开发数字地图有可能提高计算的准确性,并简化操作员的初始数据输入活动。然而,数字制图的功能并没有融入现有的预报技术中。本研究的目的是通过开发一种可自动输入底层表面电参数的技术,减少极低频段无线电轨道能量参数预报过程中的人工操作次数。方法。在这项研究中,我们使用数理统计方法合理选择无线电轨道电参数的量化水平。我们使用一种具有给定抽取系数的插值方法,以获得符合预测方法要求的电特性曲线。结果我们通过统计估算,选择了获得水平剖面图所需的底层表面电特性水平和量化间隔。此外,我们还使用 "最近邻 "方法进行了插值,并给定了抽取系数,以排除剖面参数值频繁变化的区域。衰减系数的条件是同质截面的最小长度不小于波长。所开发的技术是在 Matlab 建模环境中通过脚本和辅助函数组合实现的。我们举例说明了该技术在异质轨道上地波场强预报中的应用。该技术的新颖之处在于开发了一种原创技术,可对底层表面电导率和介电常数进行合理的剖面分析,从而将获得的数据用于预测极低频段的无线电轨道能量参数。实际意义。所开发的技术可减少初始数据输入过程中操作人员的工作量,并提高数据显示的准确性。该技术可用于预测无线电轨道能量参数的波跳方法,以确定接收器处的空间波和地面波的矢量和。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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