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Optimization of through-the-Earth radio communications via mine overburden conductivity estimation

机译:通过矿井覆盖电导率估计优化通过地球无线电通信

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Through-the-Earth (TTE) radio has been proposed as a means of emergency communications in mines. The propagation of a TTE radio signal depends chiefly on the subsurface conductivity distribution. Robust forward models of signal propagation can be computed based on a realistic conductivity estimate. These models can be used, for example, to optimize frequency, estimate signal range, identify zones of anomalously strong or weak signals, or to optimize the position of the above-ground TTE radio unit. A method was developed to determine the conductivity distribution of a mine overburden using TTE radio transmission data. At multiple locations in an underground test mine, we recorded a wideband electromagnetic signal, spanning a frequency range of approximately 500 to 8,500 Hz, transmitted from a vertical magnetic dipole at the surface. Using a finite-difference time-domain forward modeling code, a layered Earth conductivity model that accounts for topography was fitted to the observed data, which minimizes the difference between the calculated and observed attenuations for each transmitter-receiver pair, for each frequency of interest.
机译:已经提出了通过地球(TTE)无线电作为矿山中紧急通信手段。 TTE无线电信号的传播主要取决于地下电导率分布。可以基于现实的电导率估计来计算信号传播的强大的前向模型。例如,可以使用这些模型来优化频率,估计信号范围,识别异常强或弱信号的区域,或者优化上地上TTE无线电单元的位置。开发了一种方法以确定使用TTE无线电传输数据的矿山覆盖层的电导率分布。在地下试验矿井中的多个位置,我们记录了宽带电磁信号,跨越大约500至8,500 Hz的频率范围,从表面上的垂直磁偶极发射。使用有限差分时域正向建模代码,将用于地形的分层地形电导率模型适用于观察到的数据,这最小化了每个发射器 - 接收器对的计算和观察到的衰减之间的差异,用于每个感兴趣的频率。

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