An Analysis on the Influence of the Staggered Distance between PCB Rectangular Coils to the Wireless Energy Transmission Efficiency

Wen-xiao Li, Bo Yin
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引用次数: 2

Abstract

With the development of science and technology, implantable medical electronic devices are widely used in medical field, which provide new methods to human to defeat disease. With the requirements of implantable medical equipment to volume and portability, printed circuit board (PCB) coil in wireless energy transmission system application in space and finite height field with advantages of high precision, high consistency and easy to design and manufacture, the density function is greatly improved, these characteristics make it widely used in the field of magnetic resonance wireless power transmission. This paper use contrast experiment method, doing a large number of simulation experiment to double PCB coil according to 3D electromagnetic software (HFSS software), ensure that the PCB coils of electrical parameters, only changing the coil between the staggered distance, analyzing the adjacent two-layer PCB make effect on magnetic resonance frequency. Eventually reached the following conclusions: if the two-layer coils distances "s" is fixed, with the increase of displacement distance "a", the magnetic resonance frequency "f" also constantly increase, when it increases to a certain extent, it will tend to be stable.
PCB矩形线圈交错间距对无线能量传输效率的影响分析
随着科学技术的发展,植入式医疗电子设备在医疗领域得到了广泛的应用,为人类战胜疾病提供了新的手段。随着植入式医疗设备对体积和便携性的要求,印刷电路板(PCB)线圈在无线能量传输系统中应用于空间和有限高度领域具有高精度、高一致性和易于设计制造、密度功能大大提高等优点,这些特点使其在磁共振无线能量传输领域得到广泛应用。本文采用对比实验的方法,根据三维电磁软件(HFSS软件)对双层PCB线圈做大量的仿真实验,保证PCB线圈的电气参数,只改变线圈之间的错开距离,分析相邻两层PCB对磁共振频率的影响。最终得出以下结论:若两层线圈距离“s”固定,随着位移距离“a”的增加,磁共振频率“f”也不断增加,当其增加到一定程度时,会趋于稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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