Evaluating Power Density for 5G Applications

M. Nesterova, S. Nicol, Yuliya Nesterova
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引用次数: 8

Abstract

The next generation of wireless 5G technology is being continuously designed to meet the growing demand from different industries for more data, more devices, higher speed, and improved operational efficiency. While mmWave bands offer much higher bandwidths, they are subject to higher signal losses when compared to the lower frequency bands currently used for wireless technologies. As such, the industries involved require evolutionary methodologies for the thorough evaluation of 5G mobile devices. The authors offer an advanced near-field measurement technique as a solution for robust assessment of device performance. This novel method introduces the spatial vector evaluation of both electric E and magnetic H fields through the cross-detection of their interaction. Based in terms of the Poynting vector theorem, this two-probe technique provides a steady measurement-based orientation for research within the rapidly changing conditions of the mmWave environment.
评估5G应用的功率密度
下一代无线5G技术正在不断设计,以满足不同行业对更多数据、更多设备、更高速度和更高运营效率日益增长的需求。虽然毫米波频段提供更高的带宽,但与目前用于无线技术的较低频段相比,它们的信号损耗更高。因此,相关行业需要进化的方法来全面评估5G移动设备。作者提供了一种先进的近场测量技术,作为对设备性能进行稳健评估的解决方案。该方法通过对电场和磁场相互作用的交叉检测,引入了电场和磁场H的空间矢量评价。基于Poynting矢量定理,这种双探头技术为毫米波环境快速变化的条件下的研究提供了稳定的基于测量的方向。
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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