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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Propagation Modeling of Point Source Excited Magnetoinductive Waves Based on a New Plane Wave Expansion Approach
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Propagation Modeling of Point Source Excited Magnetoinductive Waves Based on a New Plane Wave Expansion Approach

机译:基于新的平面波扩展方法的点源激励磁感应波的传播建模

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摘要

The signal fading in wireless underground sensor networks (WUSNs), which is caused by lossy media such as soil and sand, can be reduced by applying technology of magnetoinductive (MI) propagation. This technology can effectively establish a communication at very low frequency (VLF). In contrast to the previous studies in the literature, which mostly focus on the propagation of plane waves, we propose a new approach based on the plane wave expansion (PWE) to model the near field MI waves. The proposed approach is based on excitation of a point source, which is a common case in a practical WUSN. The frequent usage of square lattice MI structure is investigated. To verify the mathematical derivation, the simulation of time domain based on the fourth-order Runge-Kutta (RK) method is carried out. Simulation results show that the new model can provide a precise prediction to the MI wave’s propagation, with the computation load being one-tenth of that of the time domain simulation. The characteristics of the propagation of the MI waves are presented and discussed. Finally, the reflection on the edge of the MI structure is reduced by analysing the terminal matching conditions and calculating a method for matching impedances.
机译:通过应用磁感应(MI)传播技术,可以减少无线地下传感器网络(WUSN)中由有损耗的介质(例如土壤和沙子)引起的信号衰减。该技术可以有效地建立非常低频(VLF)的通信。与以前文献中的研究主要集中于平面波的传播相反,我们提出了一种基于平面波扩展(PWE)的新方法来模拟近场MI波。所提出的方法是基于点源的激励,这在实际的WUSN中很常见。研究了方格MI结构的频繁使用。为了验证数学推导,基于四阶Runge-Kutta(RK)方法进行了时域仿真。仿真结果表明,新模型可以为MI波的传播提供精确的预测,计算量仅为时域仿真量的十分之一。提出并讨论了MI波的传播特性。最后,通过分析端子匹配条件并计算阻抗匹配方法,可以减少MI结构边缘的反射。

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