Approximating Electromagnetic Exposure in Dense Indoor Environments

D. Basu, S. F. Hasan
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引用次数: 2

Abstract

The roll out of the upcoming 5G technology is highly anticipated as it will provide very high-speed network connections and unprecedented user experience. Since 5G requires deployment of a number of transmitters tuned at very high frequency, it is imperative to know whether it will have any detrimental impact on human well being. Using simulation analysis and the existing mathematical models specific to mm-wave communications, this work reports power density approximations in dense indoor environments. The transmission frequencies are assumed to be 28 GHz and 38 GHz. The results reported in this paper indicate that the estimated power density still remains within the permissible thresholds.
密集室内环境中电磁暴露的近似计算
即将推出的5G技术备受期待,因为它将提供非常高速的网络连接和前所未有的用户体验。由于5G需要部署大量的高频发射机,因此有必要了解它是否会对人类的福祉产生有害影响。利用仿真分析和现有的毫米波通信数学模型,本研究报告了密集室内环境下的功率密度近似值。假设传输频率为28ghz和38ghz。本文的结果表明,估计的功率密度仍然保持在允许的阈值之内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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