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Exposure of Insects to Radio-Frequency Electromagnetic Fields from 2 to 120 GHz

机译:昆虫暴露于2至120 GHz的射频电磁场中

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摘要

Insects are continually exposed to Radio-Frequency (RF) electromagnetic fields at different frequencies. The range of frequencies used for wireless telecommunication systems will increase in the near future from below 6 GHz (2 G, 3 G, 4 G, and WiFi) to frequencies up to 120 GHz (5 G). This paper is the first to report the absorbed RF electromagnetic power in four different types of insects as a function of frequency from 2 GHz to 120 GHz. A set of insect models was obtained using novel Micro-CT (computer tomography) imaging. These models were used for the first time in finite-difference time-domain electromagnetic simulations. All insects showed a dependence of the absorbed power on the frequency. All insects showed a general increase in absorbed RF power at and above 6 GHz, in comparison to the absorbed RF power below 6 GHz. Our simulations showed that a shift of 10% of the incident power density to frequencies above 6 GHz would lead to an increase in absorbed power between 3–370%.
机译:昆虫不断暴露于不同频率的射频(RF)电磁场。在不久的将来,用于无线电信系统的频率范围将从6 GHz以下(2 G,3 G,4 G和WiFi)增加到最高120 GHz(5 G)。本文是第一个报告4种不同类型的昆虫吸收的RF电磁功率随频率从2 GHz到120 GHz的函数的报告。使用新型的Micro-CT(计算机断层扫描)成像技术获得了一组昆虫模型。这些模型首次在时域有限差分电磁仿真中使用。所有昆虫都表现出吸收功率与频率的关系。与6 GHz以下的吸收RF功率相比,所有昆虫在6 GHz以上的吸收RF功率都有普遍增加。我们的模拟表明,将入射功率密度的10%移到6 GHz以上的频率会导致吸收功率增加3–370%。

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