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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Third-Order Intermodulation Effects and System Sensitivity Degradation in Receive-Mode 5G Phased Arrays in the Presence of Multiple Interferers
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Third-Order Intermodulation Effects and System Sensitivity Degradation in Receive-Mode 5G Phased Arrays in the Presence of Multiple Interferers

机译:存在多个干扰源时接收模式5G相控阵中的三阶互调效应和系统灵敏度降级

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摘要

Electronically scanned phased-array antennas need to function in an interference-rich environment as an integral part of millimeter-wave 5G networks. In these scenarios, multiple interferers’ incident from different directions can create intermodulation products that can severely degrade the system sensitivity. This paper first presents the theoretical analysis of intermodulation effects in a receive-mode phased array and then shows the detailed experimental verification of multiple interferer effects on a 28-GHz 5G phased array. It is shown that the third-order intermodulation products generated by the interferers peak at certain predictable scan angles depending on the interferer directions of arrival and can limit the sensitivity of the phased array. The interferers degrade the system sensitivity even if incident in the direction of pattern nulls. Two scan-angle-dependent third-order input intercept point (IIP3) definitions are given for a phased array and their implications are discussed. It is shown that while a phased array does result in an input P1dB improvement as the number of elements increases (handles more incident power than a single channel), it does not result in an IIP3 improvement over a single channel as the number of elements increases. Theoretical predictions are also verified by extensive numerical simulations and measurement results for multiple interferers from different directions. Finally, the IIP3 degradation in mechanically scanned antennas is analyzed and it is shown that such antennas are much more robust than phased arrays for wide angle interferers.
机译:电子扫描相控阵天线需要在干扰丰富的环境中发挥作用,作为毫米波5G网络的组成部分。在这些情况下,多个干扰源从不同方向入射会产生互调产物,从而严重降低系统灵敏度。本文首先介绍了接收模式相控阵中互调效应的理论分析,然后展示了对28 GHz 5G相控阵上多种干扰效应的详细实验验证。结果表明,取决于干扰物的到达方向,由干扰物产生的三阶互调产物会以某些可预测的扫描角度达到峰值,并会限制相控阵的灵敏度。即使沿图案零点方向入射,干扰源也会降低系统灵敏度。针对相控阵给出了两个依赖于扫描角度的三阶输入截取点(IIP3)定义,并讨论了它们的含义。结果表明,虽然相控阵确实会随着元件数量的增加而使输入P1dB有所改善(比单个通道处理更多的入射功率),但随着元件数量的增加,它不会导致IIP3优于单个通道的改善。理论预测还通过广泛的数值模拟和来自不同方向的多个干扰源的测量结果进行了验证。最后,分析了机械扫描天线中IIP3的退化情况,结果表明,这种天线比广角干扰源的相控阵更坚固。

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