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Stochastic Generation of Subsurface Profiles for Realistic Simulation of Through-the-Earth Communication Systems

机译:地下轮廓的随机生成,用于对地通信系统的真实仿真

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摘要

Channel modeling for Through-the-Earth (TTE) communication has mainly been based on deterministic and empirical formulations. Deterministic models are limited to homogeneous rock structures while empirical models are only valid for the same configuration as the measurements that were taken. Given the difficulties in implementing underground measurements taking years to achieve enough database for a variety of mines and depths, we propose, as a more versatile solution, realistic simulations of a variety of underground structures to statistically characterize magnetic field attenuation. An algorithm based on the Monte Carlo method is presented and uses the Finite Element Method (FEM) to compute field propagation through each random structure. An empirical model is produced through simulations, and some metrics are evaluated, such as the median of magnetic field intensity, and the propagation loss, specially at the optimum operation frequency, in which channel variability is less spread when compared to all possible frequencies. This model can be used to estimate link budget for TTE communication in coal mines.
机译:穿越地球(TTE)通信的通道建模主要基于确定性和经验公式。确定性模型仅限于均质岩石结构,而经验模型仅对与所进行的测量相同的配置有效。考虑到实施地下测量需要花费数年时间才能获得足够的数据库用于各种地雷和深度的困难,我们提出了一种更通用的解决方案,对各种地下结构进行逼真的模拟,以统计地表征磁场衰减。提出了一种基于蒙特卡罗方法的算法,并使用有限元方法(FEM)计算通过每个随机结构的场传播。通过仿真产生经验模型,并评估一些指标,例如磁场强度的中值和传播损耗,特别是在最佳工作频率下,与所有可能的频率相比,其中信道可变性的分布较少。该模型可用于估计煤矿TTE通信的链路预算。

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