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首页> 外文期刊>Electronics and Communications in Japan / 電子情報通信. Part 1, Communications >Characteristics of Biological Tissue Equivalent Phantoms Applied to UWB Communications
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Characteristics of Biological Tissue Equivalent Phantoms Applied to UWB Communications

机译:用于UWB通信的生物组织等效幻影的特征

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Previously, the authors studied biological tissue equivalent phantoms able to simulate the electrical constants of the human body in the 3- to 6-GHz band in a single composition ratio. Therefore, in this paper, we examined how to study the antenna characteristics using the phantom when extended to a bandwidth including 900 MHz to 3 GHz and 6 to 10 GHz and performed a quantitative study focusing on the electrical constants of the phantom. The result clearly showed hardly any effect of divergence of the phantom's electrical constants from the target values on the antenna input impedance, radiation efficiency, and radiation directivity. Therefore, in the entire ultra-wideband (UWB), this phantom can be accurately evaluated through antenna characteristic measurements and is clearly effective. Furthermore, differences due to the divergence of the phantom's electrical constants from the target values in the entire UWB bandwidth (3 to 10 GHz) are within ±3% for the average local specific absorption rate (SAR) inside the phantom caused by the electromagnetic wave energy radiated from the antenna.
机译:以前,作者研究了生物组织等效体模,该体模能够以单一组成比模拟3至6 GHz频带中人体的电常数。因此,在本文中,我们研究了如何在扩展到900 MHz至3 GHz和6至10 GHz的带宽时使用体模研究天线特性,并针对体模的电常数进行了定量研究。结果清楚地表明,幻象的电常数与目标值之间的差异几乎不会对天线输入阻抗,辐射效率和辐射方向性产生任何影响。因此,在整个超宽带(UWB)中,可以通过天线特性测量准确地评估该体模,并且该体模非常有效。此外,由于电磁波在人体模型中产生的平均局部比吸收率(SAR),人体模型的电常数与整个UWB带宽(3至10 GHz)中的目标值之间的差异导致的差异在±3%以内天线辐射的能量。

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