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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >Novel Specific Absorption Rate (SAR) Measurement Method Using a Flat Solid Phantom
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Novel Specific Absorption Rate (SAR) Measurement Method Using a Flat Solid Phantom

机译:使用扁平固体幻象的新型比吸收率(SAR)测量方法

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摘要

A novel specific absorption rate (SAR) measurement method is presented that employs a flat solid phantom with multiple embedded E-field probes. A radio device under test traverses over them during the scanning process. The solid phantom provides stable dielectric properties and easy handling, while the multiple E-field probes contribute to shortening the time for measuring the SAR distribution. This method can also be used as an alternative to that employing flat phantoms filled with liquid. Based on the numerical approach, the measurement system configuration is designed to obtain the SAR distributions with an error of within $pm$ 10% at 900 and 1950 MHz, focusing on the following points: dimensions of the flat solid phantom, size of the E-field probe, and distance between the E-field probes. The experimental setup for the frequency of 1950 MHz confirms that the proposed measurement method obtains the average SARs over 10 and 1 g with an error of within $pm$10% compared to the computed values.
机译:提出了一种新颖的比吸收率(SAR)测量方法,该方法采用了带有多个嵌入式电场探头的扁平实心体模。在扫描过程中,被测无线电设备遍历它们。实心体模提供稳定的介电特性并易于处理,而多个电场探头有助于缩短测量SAR分布的时间。该方法也可以替代采用装满液体的扁平体模的方法。基于数值方法,测量系统配置旨在获得SAR分布,其在900和1950 MHz时的误差在$ pm $ 10%以内,重点在于以下几点:平面实心体模的尺寸,E的尺寸场探头,以及电场探头之间的距离。 1950 MHz频率的实验设置证实,所建议的测量方法与计算值相比,可获得10和1 g以上的平均SAR,误差在$ pm $ 10%以内。

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