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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Polarization and human body effects on the microwave absorption in a human head exposed to radiation from handheld devices
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Polarization and human body effects on the microwave absorption in a human head exposed to radiation from handheld devices

机译:极化和人体对暴露于手持设备辐射的人头中微波吸收的影响

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A multigrid finite-difference time-domain code was used to calculate specific absorption rate (SAR) distribution in a human head exposed to microwave radiation from handheld antennas. The effect of the human body was taken into account and different antennas and polarization conditions were considered, The distance between the antenna and human head were varied to examine the effect of the human body on the SAR distribution, From the numerical results, it is shown that the human body plays a significant role on the SAR value and its distribution in the head [as high as 53% monopole, 41% planar inverted F antenna (PIFA)]. It is also shown that the effect of the body is more dominant at lower frequencies (monopole 900 MHz versus 1.9 GHz). For the monopole case, effect of body is particularly important at larger separation distances from the head, e.g., at d=4 cm versus d=0.5 cm. Effect of body is particularly important for the vertical orientation cases for both the monopole and PIFA.
机译:多网格有限差分时域代码用于计算人头暴露于来自手持天线的微波辐射下的比吸收率(SAR)分布。考虑到人体的影响,并考虑了不同的天线和极化条件,改变了天线与人的头部之间的距离,以考察人体对SAR分布的影响,从数值结果可以看出人体对SAR值及其在头部的分布起着重要作用[高达53%单极,41%平面倒F天线(PIFA)]。还表明,在较低的频率下(单极900 MHz与1.9 GHz),身体的影响更为明显。对于单极情况,在距头部较大的距离(例如d = 4 cm与d = 0.5 cm)时,身体的作用尤为重要。对于单极子和PIFA,垂直方向的情况下,身体的影响尤为重要。

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