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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Theoretical and Experimental Investigation of a 60-GHz Off-Body Propagation Model
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Theoretical and Experimental Investigation of a 60-GHz Off-Body Propagation Model

机译:60 GHz离体传播模型的理论和实验研究

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A fast computation and accurate analytical model for off-body propagation is derived in this paper. The paper discusses the off-body model propagation from an external source to a receiver located on the body. The model is developed for normal incident plane wave by describing the human body with a circular cylinder. We show that the total received electric field around the human body can be written as a creeping wave in the shadow region and as a geometrical optics result for the lit region. It is also shown that at 60 GHz, the shadow boundary width is negligible. The model shows perfect agreement with the experimental results conducted on a perfectly conducting cylinder. Measurements of the creeping wave path gain have been also conducted on a real body to assess the validity of the cylinder assumption. The results have shown a path gain of about 5 dB/cm for the TM case and 3 dB/cm for the TE case. The standard deviation between the measurements and the cylindrical model is about 3.5 dB for both TM and TE cases.
机译:本文推导了一种快速计算和精确的人体体外传播分析模型。本文讨论了体外模型从外部源到位于人体上的接收器的传播。通过用圆柱体描述人体,为法向入射平面波开发了该模型。我们表明,人体周围接收到的总电场可以写为阴影区域中的蠕变波,以及照明区域中的几何光学结果。还表明,在60 GHz时,阴影边界宽度可以忽略不计。该模型显示出与在理想导电圆柱体上进行的实验结果完全一致的结果。还已经在真实物体上进行了蠕变波路径增益的测量,以评估圆柱体假设的有效性。结果表明,TM情况的路径增益约为5 dB / cm,TE情况的路径增益为3 dB / cm。对于TM和TE情况,测量值与圆柱模型之间的标准偏差约为3.5 dB。

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