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Self-user shadowing effects of millimeter-wave mobile phone antennas in a browsing mode

机译:浏览模式下毫米波手机天线的自用户遮蔽效应

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In this paper a simulation method for estimating the shadowing effect of a human at millimeter-wave frequencies is presented. The shadowing effect is studied at 28 GHz and at 60 GHz for the case when a user holds a mobile phone. Both single-hand grip and two-hand grip browsing scenarios are studied with a dual-polarized mobile phone antenna. We use the integral equation method combined with a surface-impedance-based material model for the human. It is found that at 28 GHz the human body causes shadowing of up to 22 dB behind torso and head of the human, while at 60 GHz shadowing is up to 30 dB. On the other hand, in some other directions the human body effectively increases radiation by up to 5-10 dB through scattering and reflection. The novel method using a detailed human shadowing model is useful in evaluating mm-wave mobile terminal antenna performance in realistic multipath propagation environments.
机译:本文提出了一种模拟方法,用于估计人体在毫米波频率下的阴影效果。对于用户手持手机的情况,研究了在28 GHz和60 GHz时的阴影效果。使用双极化手机天线研究单手抓握和双手抓握浏览场景。我们将积分方程方法与基于表面阻抗的材料模型结合在一起,用于人体。已经发现,在28 GHz时,人体在躯干和人体后部的阴影高达22 dB,而在60 GHz时,阴影的阴影高达30 dB。另一方面,在其他一些方向上,人体通过散射和反射将辐射有效地增加了多达5-10 dB。使用详细的人体阴影模型的新颖方法可用于评估现实多径传播环境中的毫米波移动终端天线性能。

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