Experimental Optimization of the Energy Characteristics of a Ground Penetrating Radar with Continuous Linear-Frequency-Modulated Radiation

I. Malevich, A. S. Lopatchenko
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Abstract

In recent years, research has been actively carried out aimed at developing the concept of construction and ways of technical implementation of ground penetrating radars with continuous wave linear-frequency-modulated (LFM) radiation. The key prerequisites for the creation of such systems are the complex consideration of the operating conditions of the radio channel in the near field, including the features associated with multichannel leakage of the probing signal components into the reception path, the presence of multipath reflections from the covering surface, the variable speed of the electromagnetic wave, and the provision of linear processing of a continuous group broadband radio signal with large dynamic range. The paper proposes and describes a scheme of a laboratory stand for LFM GPR research and optimization of the energy characteristics in modes with critical levels of reflections. The results of experiments on the analysis and optimization of the parameters of the end-to-end transfer characteristic of the radio channel are presented. Response studies were performed for two types of antennas at different suspension heights. The responses of the system to an increase in the durtion of the probing pulse and a change in the type of window function were evaluated. An empirical dependence of signal losses during propagation in radio channels of LFM GPR has been established. The conducted studies will improve the energy characteristics of ground penetrating radars with continuous LFM radiation by increasing the detection efficiency of shallow and near-surface objects.
连续线调频辐射探地雷达能量特性的实验优化
近年来,针对连续波线性调频(LFM)辐射探地雷达的构造概念和技术实现方式,国内外开展了积极的研究。创建此类系统的关键先决条件是对近场无线电信道操作条件的复杂考虑,包括与探测信号组件向接收路径的多通道泄漏相关的特征,覆盖表面的多路径反射的存在,电磁波的可变速度,以及提供具有大动态范围的连续组宽带无线电信号的线性处理。本文提出并描述了一种用于LFM探地雷达研究的试验台方案,并对临界反射能级模式下的能量特性进行了优化。给出了无线信道端到端传输特性参数分析与优化的实验结果。对两种天线在不同悬架高度下的响应进行了研究。评估了系统对探测脉冲持续时间的增加和窗函数类型的变化的响应。建立了LFM探地雷达在无线电信道中传播过程中信号损失的经验依赖关系。通过提高对浅层和近地表目标的探测效率,改善具有连续LFM辐射的探地雷达的能量特性。
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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