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SAR investigations on the exposure compliance of wearable wireless devices using infrared thermography

机译:SAR对使用红外热成像的可穿戴无线设备的曝光遵守的调查

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Wearable electronics have become the norm over the last few years. Extensive use of wearable wireless devices (WWD) in greater proximity to the body has increased concern about potential biological effects due to the interaction of human tissues with electromagnetic (EM) fields. Human tissues absorb radiofrequency (RF) waves that are capable of affecting energy states at a molecular level, leading to unsafe effects. Remarkably, thermal effect due to the absorption of RF waves is a better biological manifestation than traditional specific absorption rate (SAR) values. In this study, we investigated the application of infrared thermography (IRT) to obtain temperature dynamics and reconstructed average SAR to evaluate the exposure compliance of WWDs. A microstrip-based monopole antenna was used to determine the biological effects of the interaction of EM waves with the body. SAR was obtained using EM field simulations and through reconstruction from thermal measurements with the use of bio-heat equations. The maximum average SAR on the skin was 50mWkg(-1) for the simulations and 54mWkg(-1) from reconstruction after IRT experiments. The maximum temperature change in both cases was observed to be less than 1 degrees C. The difference between the average SAR obtained through IRT and simulation tools was 8.9% on average. SAR determination from the information acquired using IR temperature dynamics can assess bio-compliance of modern wearable devices for various wireless applications. Bioelectromagnetics. 39:451-459, 2018. (c) 2018 Wiley Periodicals, Inc.
机译:可穿戴电子产品已成为过去几年的常态。由于人体组织与电磁(EM)田地的相互作用,广泛使用可穿戴无线设备(WWD)的潜在生物学效应的兴趣增加。人体组织吸收能够在分子水平处影响能量状态的射频(RF)波,导致不安全的效果。值得注意地,由于RF波的吸收导致的热效应是比传统的特定吸收率(SAR)值更好的生物表现。在这项研究中,我们调查了红外热成像(IRT)的应用,获得温度动力学和重建的平均SAR,以评估WWD的暴露依从性。用于基于微带的单极天线来确定EM波与身体的相互作用的生物学效应。使用EM场模拟获得SAR,并通过使用生物热方程来重建热测量。皮肤上的最大平均SAR为50mWkg(-1),用于IRT实验后重建的模拟和54mWkg(-1)。两种情况下的最高温度变化被观察到小于1℃。通过IRT和仿真工具获得的平均SAR之间的差异平均为8.9%。使用IR温度动态获取的信息的SAR确定可以评估各种无线应用的现代可穿戴设备的生物依从性。生物电磁学。 39:451-459,2018。(c)2018年Wiley期刊,Inc。

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