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Discrepancies of Measured SAR between Traditional and Fast Measuring Systems

机译:传统测量系统与快速测量系统之间的被测SAR差异

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摘要

Human exposure to mobile devices is traditionally measured by a system in which the human body (or head) is modelled by a phantom and the energy absorbed from the device is estimated based on the electric fields measured with a single probe. Such a system suffers from low efficiency due to repeated volumetric scanning within the phantom needed to capture the absorbed energy throughout the volume. To speed up the measurement, fast SAR (specific absorption rate) measuring systems have been developed. However, discrepancies of measured results are observed between traditional and fast measuring systems. In this paper, the discrepancies in terms of post-processing procedures after the measurement of electric field (or its amplitude) are investigated. Here, the concerned fast measuring system estimates SAR based on the reconstructed field of the region of interest while the amplitude and phase of the electric field are measured on a single plane with a probe array. The numerical results presented indicate that the fast SAR measuring system has the potential to yield more accurate estimations than the traditional system, but no conclusion can be made on which kind of system is superior without knowledge of the field-reconstruction algorithms and the emitting source.
机译:传统上,人体对移动设备的暴露是通过一个系统来测量的,在该系统中,人体(或头部)是用幻像模型建模的,并且基于使用单个探针测得的电场来估算从设备吸收的能量。由于需要在体模内重复进行体积扫描以捕获整个体积中吸收的能量,因此这种系统效率低下。为了加快测量速度,开发了快速SAR(比吸收率)测量系统。但是,在传统和快速测量系统之间观察到测量结果的差异。在本文中,研究了在测量电场(或其幅度)之后在后处理程序方面的差异。在此,相关的快速测量系统基于感兴趣区域的重构场估计SAR,同时使用探头阵列在单个平面上测量电场的幅度和相位。数值结果表明,快速SAR测量系统具有比传统系统更准确的估计的潜力,但是如果不了解场重构算法和发射源,就无法得出哪种系统优越的结论。

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