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Effects of electromagnetic absorption toward a human head due to variation of its dielectric properties at 900 and 1900 MHz with different antenna substrates

机译:不同天线基板在900和1900 MHz处的介电特性变化导致的对人头的电磁吸收效应

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The aim of this paper is to analyze the effects of electromagnetic (EM) energy absorption at 900 and 1900 MHz when the human head’s dielectric properties are varied. This radiation is measured in terms of specific absorption rate (SAR). The characteristics of the helical antenna and its substrates with variation of the human head dielectric properties were simulated via the finite-difference time domain (FDTD) method using the CST Microwave studio. The human head dielectric properties are manipulated by increasing and decreasing 10% and 20% of each dielectric property. In this study, SAR values increase with increase of the human head’s conductivity, while increase of permittivity and densities decreases it. A helical antenna with a substrate of FR4 resulted in higher SAR values in all frequencies. The head SAR values are higher in the upper frequency exposures. The helical antenna with a substrate of Rogers RO3006 (loss free) was found to be the best-tested substrate, which contributed toward much lower SAR values in all GSM frequency bands.
机译:本文的目的是分析当人的头部的介电特性发生变化时,在900和1900 MHz时电磁(EM)能量吸收的影响。此辐射是根据比吸收率(SAR)进行测量的。通过使用CST Microwave Studio的时差有限域(FDTD)方法,模拟了螺旋天线及其衬底随人头介电特性变化的特性。通过增加和减少每种介电特性的10%和20%来控制人头的介电特性。在这项研究中,SAR值随人头电导率的增加而增加,而介电常数和密度的增加则使SAR值降低。带有FR4衬底的螺旋天线在所有频率下均会产生更高的SAR值。在较高频率的曝光中,磁头SAR值较高。发现带有罗杰斯RO3006(无损)基板的螺旋天线是测试最充分的基板,有助于在所有GSM频段中降低SAR值。

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