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A new VLC channel model for underground mining environments

机译:用于地下挖掘环境的新VLC通道模型

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Due to the frequent dramatic disasters of underground mining collapses, the establishment of a reliable communication system in the underground mining environment is of vital importance. Instead of using the conventional wired and radio communication systems, researchers have considered the use of visible light communication (VLC) for underground mining communications (UMCs). In this paper, we extend the recursive method to model VLC propagation channel and focus on two different parts of underground mining communication, namely the working face and mining roadway. Both the required illuminance and VLC channel characteristics are thoroughly investigated for miner-to-miner (M2M) and infrastructure-to-miner (I2M) communication scenarios. It is shown that the illumination standard requirements can be fulfilled in the two parts and the mining roadway is brighter than the working face environment. Furthermore, VLC channel characteristics, such as the channel gain, mean excess delay, root mean square (RMS) delay spread, are thoroughly investigated. It is found that the proposed channel model is sufficiently accurate when taking the line-of-sight (LoS) and the first order reflections into consideration.
机译:由于地下挖掘崩溃的频繁急剧灾害,地下采矿环境中的可靠通信系统的建立至关重要。研究人员而不是使用传统的有线和无线电通信系统,而是考虑使用用于地下采矿通信(UMC)的可见光通信(VLC)。在本文中,我们将递归方法扩展到VLC传播信道,专注于地下采矿通信的两个不同部分,即工作面和采矿道路。对于矿工(M2M)和基础设施到矿工(I2M)通信场景,彻底调查所需的照度和VLC信道特征。结果表明,在两部分中可以实现照明标准要求,采矿道路比工作面环境更亮。此外,彻底研究了VLC信道特性,例如信道增益,平均过度延迟,均方延迟传播。发现所提出的频道模型在考虑视线(LOS)和第一阶的反射时足够准确。

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