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Specific Absorption Rate Values of Handsets in Cheek Position at 835 MHz as a Function of Scaled Specific Anthropomorphic Mannequin Models

机译:835 MHz面颊位置手机的比吸收率值与比例化拟人拟人体模型的函数关系

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A specific anthropomorphic mannequin (SAM) model was used to investigate the relation between local specific absorption rate (SAR) and head size. The model was scaled to 80 to 100% sized models at intervals of 5%. We assumed that the shell of the SAM model has the same properties as the head-equivalent tissue. Five handsets with a monopole antenna operating at 835 MHz were placed in the approximate cheek position against the scaled SAM models. The handsets had different antenna lengths, antenna positions, body sizes, and external materials. SAR distributions in the scaled SAM models were computed using the finite-difference time-domain method. We found that a larger head causes a distinct increase in the spatial peak 1-voxel SAR, while head size did not significantly change the peak 1-g averaged-SAR and 10-g averaged-SAR values for the same power level delivered to the antenna.
机译:使用特定的拟人模型(SAM)模型研究局部比吸收率(SAR)与头部大小之间的关系。模型以5%的间隔缩放为80至100%大小的模型。我们假设SAM模型的外壳具有与头部等效组织相同的属性。将五只具有835 MHz单极天线工作的手机放在与SAM比例模型相对应的大致脸颊位置。手机具有不同的天线长度,天线位置,机身尺寸和外部材料。使用有限差分时域方法计算了比例缩放SAM模型中的SAR分布。我们发现,较大的头部会导致空间峰值1体素SAR明显增加,而头部大小并没有显着改变在相同功率水平下传递给峰值功率的1 g平均SAR和10 g平均SAR峰值。天线。

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