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Theoretical and numerical assessment of maximally allowable power‐density averaging area for conservative electromagnetic exposure assessment above 6 GHz

机译:7 GHz高于保守电磁曝光评估的最大允许功率密度平均面积的理论与数值评价

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The objective of this paper is to determine a maximum averaging area for power density (PD) that limits the maximum temperature increase to a given threshold for frequencies above 6?GHz. This maximum area should be conservative for any transmitter at any distance 2?mm from the primary transmitting antennas or secondary field‐generating sources. To derive a generically valid maximum averaging area, an analytical approximation for the peak temperature increase caused by localized exposure was derived. The results for a threshold value of 1?K temperature rise were validated against simulations of a series of sources composed of electrical and magnetic elements (dipoles, slots, patches, and arrays) that represented the spectrum of relevant transmitters. The validation was successful for frequencies in which the power deposition occurred superficially (i.e., 10?GHz). In conclusion, the averaging area for a PD limit of 10?W/m 2 that conservatively limits the temperature increase in the skin to less than 1?K at any distance 2?mm from the transmitters is frequency dependent, increases with distance, and ranges from 3?cm 2 at 10?GHz to 1.9?cm 2 at 100?GHz. In the far‐field, the area depends additionally on distance and the antenna array aperture. The correlation was found to be worse at lower frequencies (10?GHz) and very close to the source, the systematic evaluation of which is part of another study to investigate the effect of different coupling mechanisms in the reactive near‐field on the ratio of temperature increase to incident power density. The presented model can be directly applied to any other PD and temperature thresholds. Bioelectromagnetics. 39:617–630, 2018. ? 2018 Wiley Periodicals, Inc.
机译:本文的目的是确定用于功率密度(PD)的最大平均区域,其限制最大温度增加到给定阈值的频率为6°GHz。该最大区域应保守任何距离在任何距离处的发射器且来自主要发射天线或次级现场生成源的2?mm。为了导出仿制性有效的最大平均面积,推导出由局部暴露引起的峰值温度增加的分析近似。阈值为1Ω·k温度升高的结果验证了由代表相关发射器的频谱的电气和磁性元件(偶极子,槽,贴片和阵列)的一系列源的模拟验证。验证是成功的频率,其中功率沉积出现的超谱(即,& 10?GHz)。总之,对于10?w / m 2的Pd极限的平均区域,其保守地将皮肤的温度增加到小于1Ω·k,在任何距离下,从发射机达到2Ωmm是频率依赖的,随着距离增加而增加,并且在100的& 10?ghz处的3°2〜1.9?ghz。在远场中,该区域还取决于距离和天线阵列孔。发现相关性在较低频率(& 10?GHz)和非常接近源极差,系统评价是另一个研究的一部分,以研究不同耦合机制在反应近场的影响温度升高与入射功率密度的比率。呈现的模型可以直接应用于任何其他PD和温度阈值。生物电磁学。 39:617-630,2018年。 2018年Wiley期刊,Inc。

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