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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >A multimodal approach to the analysis of the attenuation properties of MF communication systems in mine tunnels
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A multimodal approach to the analysis of the attenuation properties of MF communication systems in mine tunnels

机译:分析矿井隧道中频通信系统衰减特性的多模态方法

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摘要

Low-attenuation medium-frequency communications are still utilized in mine tunnels as useful backup systems. Previous research on the topic has addressed the evaluation and measurement of the wave propagation parameters of these communication structures considering the presence of a single conductor inside the tunnel. In this work, the presence of multiple conductors is considered and a multimodal approach is developed to determine the expected attenuation as a function of the distance and frequency. The examples provided in the paper concern a three-conductor structure, consisting of one power cable and two rail tracks, where three basic modes propagate. Simulation results show that the expected attenuation depends on the set of initial currents injected into the conductors and that, in the case of randomly injected currents, the expected attenuation constant decreases with distance, tending to the attenuation constant of the least attenuated mode.
机译:低衰减中频通信仍在矿井隧道中用作有用的备用系统。考虑到隧道内部只有一根导体,有关该主题的先前研究已针对这些通信结构的波传播参数进行了评估和测量。在这项工作中,考虑了多个导体的存在,并开发了一种多模态方法来确定作为距离和频率的函数的预期衰减。本文提供的示例涉及一种三导体结构,该结构由一根电源线和两条轨道组成,其中传播三种基本模式。仿真结果表明,预期衰减取决于注入导体的初始电流的集合,并且在随机注入电流的情况下,预期衰减常数随距离而减小,趋向于最小衰减模式的衰减常数。

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