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Effects of the permittivity and conductivity of human body for normal-mode helical antenna performance

机译:常模螺旋天线性能对人体介电常数和电导率的影响

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In the capsule endoscope application, a coil type antenna namely a normal-mode helical antenna was used because of suitable shape to deploy in a cylindrical capsule. In antenna design, many human tissue conditions such as a stomach, fat and skin should be taken into account. Here, losses of human tissues are changed depending on personal differences and basic feature of the antenna in numerical simulation. At some tissue examples, antenna input resistance (Rin) increases by the permittivity (εr) and conductivity (σ) effect were shown. In order to establish antenna design method, physical mechanism of antenna input resistance increases should be clarified. In this paper, input resistance increases are numerically clarified for all changing conditions of permittivity and conductivity through electromagnetic simulations. As for an antenna, self-resonant normal-mode helical antenna of 0.2 wavelength is designed at 402 MHz. In the case of εr = 11.6, the Rin value of 0.63 Ω at σ = 0 [S/m] is increased to the maximum value of Rin = 35 Ω at σ = 0.3 [S/m]. For understanding input resistance increases mechanism, electric field distributions around antenna are also shown. To ensure simulation adequateness, a measured result of input resistance is compared with simulated result.
机译:在胶囊内窥镜应用中,由于合适的形状在圆柱形胶囊中展开,使用线圈式天线即常模螺旋天线。在天线设计中,应考虑许多人类组织条件,如胃,脂肪和皮肤。这里,根据数值模拟中的天线的个人差异和基本特征来改变人体组织的损失。在一些组织例子中,天线输入电阻(RIN)通过介电常数(εr)增加,并且示出了电导率(σ)效应。为了建立天线设计方法,应澄清天线输入电阻的物理机制。在本文中,对于通过电磁模拟的所有变化的介电常数和电导率的所有变化条件,对输入电阻增加。至于天线,设计为0.2波长的自谐振常规螺旋天线以402MHz设计。在εr= 11.6的情况下,Σ= 0 [s / m]的0.63Ω的载体值增加到σ= 0.3的rin =35Ω的最大值= 0.3 [s / m]。为了理解输入电阻增加机制,还示出了天线周围的电场分布。为了确保模拟充足,将输入电阻的测量结果与模拟结果进行比较。

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