Intermodulation Effects and System Sensitivity Degradation in $5\mathrm{G}$ Phased-Arrays due to Multiple Interferers

Bhaskara Rupakula, Gabriel M. Rebeiz
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引用次数: 4

Abstract

Electronically-scanned phased arrays are an integral part of millimeter-wave 5G networks, and therefore, it is important to examine the effects of interferers on the performance of a receiving phased-array. This paper presents both theoretical analysis and experimental verification of 1M3 effects in a 28 GHz 5G phased array operating in the receive mode. It is shown that the intermodulation products generated by interferers peak at certain predictable scan angles depending on their direction of arrival and can limit the sensitivity of the phased array. The interferers degrade the phased-array sensitivity even if present in the direction of pattern nulls. Theoretical predictions are verified by numerical code and measurement results for multiple interferers from different directions.
多干扰下$5\ mathm {G}$相控阵的互调效应和系统灵敏度退化
电子扫描相控阵是毫米波5G网络的组成部分,因此,检查干扰对接收相控阵性能的影响非常重要。本文对28ghz 5G相控阵工作在接收模式下的1M3效应进行了理论分析和实验验证。结果表明,干涉产生的互调产物根据其到达的方向在某些可预测的扫描角处达到峰值,并且可以限制相控阵的灵敏度。干扰降低相控阵的灵敏度,即使存在于图零点方向。对不同方向的多干扰源进行了数值计算和实测验证。
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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