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Power Density Measurements at 15 GHz for RF EMF Compliance Assessments of 5G User Equipment

机译:15 GHz的功率密度测量,用于5G用户设备的RF EMF合规性评估

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In this paper, different measurement schemes are studied in order to investigate the possibilities and limitations of scalar- and vector-based measurement systems for radio frequency electromagnetic fields compliance assessments of fifth generation mobile communication user equipment (UE). Two UE antenna array designs, transmitting at 15 GHz and employing patch and notch antenna elements, are considered for different phase excitations. Using free space power density as the exposure metric, the maximum permissible transmitted power of UE, compliant with the maximum permissible exposure limits specified by the U.S. Federal Communications Commission (FCC) and the basic restrictions of the International Commission on Non-Ionizing Radiation Protection, is determined. The accuracy of different measurement schemes is assessed using numerical simulation. Verifying measurements is carried out in a semiane-choic chamber. The results indicate that, for UE employing array antennas and intended to be used in immediate vicinity of the human body, scalar measurement systems used in combination with straightforward field combination techniques will lead to overly conservative results. A more accurate and less conservative approach for these products is to conduct separate measurements for different excitations in order to span the space of possible excitations. This will result in a more complicated measurement setup and increase the measurement time, which points to a need for very fast measurement systems.
机译:在本文中,研究了不同的测量方案,以研究基于标量和矢量的测量系统在第五代移动通信用户设备(UE)的射频电磁场符合性评估中的可能性和局限性。对于不同的相位激励,考虑了两种以15 GHz发射并采用贴片和陷波天线元件的UE天线阵列设计。使用自由空间功率密度作为暴露度量标准,UE的最大允许发射功率符合美国联邦通信委员会(FCC)规定的最大允许暴露限制以及国际非电离辐射防护委员会的基本限制,决心,决意,决定。使用数值模拟评估不同测量方案的准确性。验证测量是在半选择腔中进行的。结果表明,对于采用阵列天线并打算在人体附近使用的UE,与直接场组合技术结合使用的标量测量系统将导致过于保守的结果。对于这些产品,更准确,更不保守的方法是对不同的激发进行单独的测量,以便跨越可能激发的空间。这将导致更复杂的测量设置并增加测量时间,这表明需要非常快速的测量系统。

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