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Studies on Propagation Characteristics of Radio Waves for Wireless Networks in Underground Coal Mines

机译:地下煤矿无线网络广播波传播特性研究

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摘要

Communication systems relying on wireless technology can significantly improve the safety and production in underground mines; however, their unreliable operation in such high-stress environments is a significant obstacle to achieving this. Underground mine tunnels offers several distinctive features that are quite different from regular rail/road tunnels. While several studies have been performed on electromagnetic (EM) wave propagation in tunnel environments, there is limited understanding of the inter-working of tunnel dimension with long range tilt variations (a typically feature of coal mines) on the propagation characteristics of wireless radio waves. In this paper, we study and describe a new hybrid multimode model for wireless communication applications in underground coal mines; and analyze it with respect to significant parameters such as operating frequency, mine tunnel size, transmitter-receiver position, electrical parameters and antenna gain. The characterization results suggest that the mine tunnel size and transmitter-receiver position affects the signal behavior significantly. However, the electrical parameters have almost negligible effects on the propagation.
机译:依托无线技术的通信系统可以显着提高地下矿山的安全性和生产;然而,它们在这种高应力环境中的不可靠的操作是实现这一目标的重要障碍。地下矿井隧道提供了几种与普通轨道/道路隧道完全不同的独特功能。虽然已经对隧道环境中的电磁(EM)波传播进行了几项研究,但有限地了解隧道尺寸的间隙,长范围倾斜变化(煤矿的通常特征)对无线无线电波的传播特性。在本文中,我们研究并描述了地下煤矿中的无线通信应用的新混合多模模型;并对诸如工作频率,矿隧道大小,发射机 - 接收器位置,电参数和天线增益的显着参数进行分析。表征结果表明,矿井隧道尺寸和发射机接收器位置显着影响信号行为。然而,电气参数几乎可以忽略不计的传播。

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