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BEHAVIOR OF SEVERAL ANTENNA TOPOLOGIES NEAR THE HUMAN HEAD AT THE 2.4-2.5 GHz BAND

机译:在2.4-2.5 GHz频段人头附近的几个天线拓扑的行为

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The increasing growth of wireless devices operating at the 2.4-2.5 GHz band near the human head forces the antenna community to improve the robustness of the radiating system to the undesired effects caused by the proximity of the human head. In this sense, this study is focused on assessing the electromagnetic performance of several antenna topologies in the presence of the human head with the objective of determining the topology that maximizes the ratio between the radiated power in free space and the power absorbed by the human head. With this aim, the main antenna parameters [radiation efficiency, radiation patterns, and specific absorption rate (SAR)] of several antenna topologies (dipole, loop, slot, and microstrip patch) operating at the industrial, scientific, and medical 2.4-2.5 GHz band close to the human head are measured and compared. The experimental results demonstrate that the best performance is achieved by the microstrip patch antenna because it presents less human head absorption and less SAR, thus maximizing the radiated power. The study also states that the effect of the human head proximity over the radiation pattern increases the directivity in all cases under study except the patch case where the effect is negligible. Hence, it is possible to conclude that the microstrip patch is a good candidate for wireless devices operating close to the human head because it not only maximizes the ratio between the radiated power and the power absorbed by the human head but also contributes to reduce SAR.
机译:在人头附近以2.4-2.5 GHz频段工作的无线设备的增长不断增长,迫使天线社区提高了辐射系统的鲁棒性,以应对由人头靠近引起的不良影响。从这个意义上讲,这项研究着重于评估人头存在时几种天线拓扑的电磁性能,目的是确定使自由空间中的辐射功率与人头吸收的功率之比最大的拓扑。为此,在工业,科学和医学领域使用的几种天线拓扑结构(偶极,环形,缝隙和微带贴片)的主要天线参数[辐射效率,辐射图和比吸收率(SAR)]为2.4-2.5测量并比较接近人头的GHz频段。实验结果表明,微带贴片天线可获得最佳性能,因为它呈现出更少的人头吸收能力和更少的SAR,从而使辐射功率最大化。该研究还指出,在所研究的所有情况下,人头接近度对辐射方向图的影响都会增加方向性,但补丁情况除外,在这种情况下,这种影响可以忽略不计。因此,可以得出结论,微带贴片是在接近人体头部操作的无线设备的良好候选者,因为它不仅使辐射功率与人体头部吸收的功率之比最大化,而且有助于降低SAR。

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