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用于高通道间隔离的双极化多通道24GHz雷达传感器天线

Dual-Polarized Multi-Channel 24 GHz Radar Sensor Antenna for High Channel-to-Channel Isolation.

作者信息

Kim Young-Jun, Noh Gunhark, Lee Han Lim, Yu Sungwook

机构信息

School of Electrical and Electronics Engineering, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul 06974, Korea.

出版信息

Sensors (Basel). 2020 Sep 14;20(18):5233. doi: 10.3390/s20185233.

Abstract

This article presents a dual-polarized, high gain multi-beam and high T/Rx channel-to-channel isolation antenna module for 24 GHz sensor applications. The proposed antenna is configured to support 2-Tx and 2-Rx channels with a pair of vertically polarized (VP) radiation pattern and a pair of horizontally polarized (HP) radiation pattern. Further, each linearly polarized T/Rx antenna is configured by 2 × 4 array with a multi-layer integrated feed network, resulting in four sets of 2 × 4 array antennas fabricated within a single printed circuit board (PCB). Since multiple RF channels must be ensured with minimal interference, high antenna-to-antenna, including Tx-to-Tx, Rx-to-Rx, and Tx-to-Rx port isolations in the proposed antenna are achieved by multi-layered feed network and four sets of T-shaped magnetic walls. To verify the performance of the proposed structure, a 2-Tx and 2-Rx antenna module was fabricated at 24 GHz. The fabricated antenna showed a measured maximum 10-dB impedance bandwidth of 3.9% with a maximum measured gain of 11.7 dBi, considering both Tx and Rx. Further, the measured channel-to-channel isolations were always better than 35.6 dB at 24 GHz.

摘要

本文介绍了一种用于24GHz传感器应用的双极化、高增益多波束且具有高收发通道间隔离度的天线模块。所提出的天线被配置为支持2个发射通道和2个接收通道,具有一对垂直极化(VP)辐射方向图和一对水平极化(HP)辐射方向图。此外,每个线性极化的收发天线由一个带有多层集成馈电网络的2×4阵列构成,从而在单个印刷电路板(PCB)内制造出四组2×4阵列天线。由于必须确保多个射频通道之间的干扰最小,所提出的天线通过多层馈电网络和四组T形磁壁实现了高的天线间隔离,包括发射端到发射端、接收端到接收端以及发射端到接收端端口的隔离。为了验证所提出结构的性能,制作了一个24GHz的2发射端和2接收端天线模块。考虑发射端和接收端,所制作的天线测得的最大10dB阻抗带宽为3.9%,最大测得增益为11.7dBi。此外,在24GHz时测得的通道间隔离始终优于35.6dB。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d018/7571171/58724705b75a/sensors-20-05233-g001.jpg

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