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Interference Mitigation for Visible Light Communications in Underground Mines Using Angle Diversity Receivers

机译:使用角度分集接收机缓解地下矿井中可见光通信的干扰

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摘要

This paper proposes two solutions based on angle diversity receivers (ADRs) to mitigate inter-cell interference (ICI) in underground mining visible light communication (VLC) systems, one of them is a novel approach. A realistic VLC system based on two underground mining scenarios, termed as mining roadway and mine working face, is developed and modeled. A channel model based on the direct component in line-of-sight (LoS) and reflections of non-line-of-sight (NLoS) links is considered, as well as thermal and shot noises. The design and mathematical models of a pyramid distribution and a new hemi-dodecahedral distribution are addressed in detail. The performances of these approaches, accompanied by signal combining schemes, are evaluated with the baseline of a single photo-diode in reception. Results show that the minimum lighting standards established in both scenarios are met. As expected, the root-mean-square delay spread decreases as the distance between the transmitters and receivers increases. Furthermore, the hemi-dodecahedron ADR in conjunction with the maximum ratio combining (MRC) scheme, presents the best performance in the evaluated VLC system, with a maximum user data rate of 250 Mbps in mining roadway and 120 Mbps in mine working face, received energy per bitoise power of 32 dB and 23 dB, respectively, when the bit error rate corresponds to , and finally, values of 120 dB in mining roadway and 118 dB in mine working face for signal-to-interference-plus-noise ratio are observed in a cumulative distribution function.
机译:本文提出了两种基于角度分集接收机(ADR)的解决方案,以减轻地下采矿可见光通信(VLC)系统中的小区间干扰(ICI),其中一种是新颖的方法。基于两个地下采矿场景(称为采矿巷道和矿井工作面)的真实VLC系统已开发并建模。考虑了基于视线(LoS)的直接分量和非视线(NLoS)链路反射的信道模型,以及热噪声和散粒噪声。详细介绍了金字塔分布和新的半十二面体分布的设计和数学模型。这些方法的性能,以及信号组合方案,均以接收中单个光电二极管的基线进行评估。结果表明,满足两种情况下建立的最低照明标准。正如预期的那样,均方根延迟扩展会随着发射机和接收机之间距离的增加而减小。此外,半十二面体ADR与最大比率合并(MRC)方案相结合,在评估的VLC系统中表现出最佳性能,在采矿巷道中的最大用户数据速率为250 Mbps,在矿井工作面上的最大用户数据速率为120 Mbps当误码率对应于时,每比特/噪声功率分别为32 dB和23 dB,最后,在采矿巷道中为120 dB,在矿井工作面中为118 dB,从而产生信号干扰加噪声在累积分布函数中观察到比率。

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