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基于基片集成波导馈电网络开发用于空间低交叉极化情况的宽带微带贴片天线。

Developing Broadband Microstrip Patch Antennas Fed by SIW Feeding Network for Spatially Low Cross-Polarization Situation.

作者信息

Karami Farzad, Boutayeb Halim, Amn-E-Elahi Ali, Ghayekhloo Alireza, Talbi Larbi

机构信息

Département d'Informatique et d'Ingénierie, Université du Québec en Outaouais, Gatineau, QC J8Y 3G5, Canada.

出版信息

Sensors (Basel). 2022 Apr 24;22(9):3268. doi: 10.3390/s22093268.

Abstract

A stacked multi-layer substrate integrated waveguide (SIW) microstrip patch antenna with broadband operating bandwidth and low cross-polarization radiation is provided. A complete study on the propagating element bandwidth and cross polarization level is presented to demonstrate the importance of the design. The proposed antenna includes three stacked printed circuit board (PCB) layers, including one layer for the radiating 2 × 2 rectangular patch elements and two SIW PCB layers for the feeding network. There are two common methods for excitation in cavity-backed patch antennas: probe feeding (PF) and aperture coupling (AC). PF can be used to increase the bandwidth of the antenna. Although this method increases the antenna’s bandwidth, it produces a strong cross-polarized field. The AC method can be used to suppress cross-polarized fields in microstrip patch antennas. As microstrip patch antennas are inherently narrowband, the AC method has little effect on their bandwidth. This paper proposes an antenna that is simultaneously fed by AC and PF. As a result of this innovation, the operating bandwidth of the antenna has increased, and cross-polarization has been reduced. Actually, the combination of probe feeding and aperture coupling schemes leads to achieving a broadband operating bandwidth. The arrangement of radiator elements and cavities implements a mirrored excitation technique while maintaining a low cross-polarization level. In both numerical and experimental solutions, a less than −30 dB cross-polarization level has been achieved for all of the main directions. A fractional impedance bandwidth of 29.8% (10.55−14.25 GHz) for S11 < −10-dB is measured for the proposed array. Simulated and measured results illustrate good agreement. Having features like low cost, light weight, compactness, broadband, integration capabilities, and low cross-polarization level makes the designed antenna suitable for remote-sensing and satellite applications.

摘要

提供了一种具有宽带工作带宽和低交叉极化辐射的堆叠式多层基片集成波导(SIW)微带贴片天线。对传播元件带宽和交叉极化水平进行了全面研究,以证明该设计的重要性。所提出的天线包括三个堆叠的印刷电路板(PCB)层,其中一层用于辐射2×2矩形贴片元件,另外两层SIW PCB层用于馈电网络。背腔贴片天线有两种常见的激励方法:探针馈电(PF)和孔径耦合(AC)。PF可用于增加天线的带宽。虽然这种方法增加了天线的带宽,但会产生很强的交叉极化场。AC方法可用于抑制微带贴片天线中的交叉极化场。由于微带贴片天线本质上是窄带的,AC方法对其带宽影响很小。本文提出了一种同时采用AC和PF馈电的天线。由于这一创新,天线的工作带宽增加了,交叉极化也降低了。实际上,探针馈电和孔径耦合方案的结合导致实现了宽带工作带宽。辐射器元件和腔体的布置实现了镜像激励技术,同时保持了低交叉极化水平。在数值和实验解决方案中,所有主方向的交叉极化水平均低于−30 dB。所提出的阵列在S11 < −10 dB时测得的分数阻抗带宽为29.8%(10.55−14.25 GHz)。模拟和测量结果显示出良好的一致性。所设计的天线具有低成本、重量轻、紧凑、宽带、集成能力强和低交叉极化水平等特点,适用于遥感和卫星应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ade/9102825/2c776e386b90/sensors-22-03268-g001a.jpg

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