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Coupling between coils in the presence of conducting medium

机译:存在导电介质时线圈之间的耦合

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The authors have studied analytically by simulation and by experiment the impact of a conducting medium on the mutual inductance between two coils, in particular as related to the attenuation of magneto-inductive (MI) waves. To illustrate the physics, the distributions of both the magnetic field and the Poynting vector are determined. They show that the plane wave approach used in the literature for the theoretical description of MI attenuation has only limited validity. It is further found that the mutual inductance becomes a complex quantity, its modulus declining monotonically as a function of conductivity or medium thickness. Their results will be relevant for the design and optimisation of MI waveguide links in conducting media, in general, and particularly when the attenuation is caused by soil conductivity. The results can also be useful for practical applications including in vivo communication and wireless power transfer for medical implants.
机译:作者通过仿真和实验方法分析了研究,研究了导电介质对两个线圈之间互感的影响,特别是与磁感应(MI)波的衰减有关。为了说明物理学,确定了磁场和坡印廷矢量的分布。他们表明,文献中用于MI衰减理论描述的平面波方法仅具有有限的有效性。进一步发现,互感成为复数,其模量作为导电率或中等厚度的函数单调下降。通常,其结果与导电介质中MI波导链路的设计和优化有关,特别是当衰减是由土壤电导率引起时。该结果也可用于实际应用,包括用于医疗植入物的体内通信和无线电力传输。

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