Array antenna characteristics improvement: Parasitic patches (two disposals) and multi layer substrate techniques

Chater Nadia, Mazri Tomader, M. Benbrahim
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引用次数: 5

Abstract

This paper will introduce the approaches for characteristics improvement of patch array antenna for electronic scanning radar application. The basic array antenna is designed on FR-4 substrate and we have used microstrip technique as feeding. This antenna is based on 8 patches operating at frequency 3GHz. This structure has two disadvantages; a low gain value caused by the lossy nature of substrate and a narrow bandwidth by dint of microstrip antenna limitations. Thus, the objective of this work is to improve the gain and the bandwidth of the basic structure. For this reason, two techniques will be presented and compared in this paper: Parasitic patches and multilayer techniques. The first one consists on adding a number of parasitic patches, two different ways of parasitic patches dispositions are proposed. The distance between driven and parasitic patches is evaluated. Regarding the second technique, a layer of FR-4 is added to the substrate distanced with air gap which thickness is 0.04xAg. The design and the simulation will be performed using Advanced Design System (ADS) tool. Not only the comparison between basic array antenna and both techniques will be presented, but also the comparison results between simulations of both modified structures using the previous techniques will be performed.
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阵列天线特性改进:寄生贴片(两次处理)和多层衬底技术
本文将介绍用于电子扫描雷达的贴片阵列天线的特性改进方法。基本阵列天线设计在FR-4基板上,采用微带技术作为馈电。该天线基于8个贴片,工作频率为3GHz。这种结构有两个缺点;由于衬底的损耗特性和由于微带天线的限制而产生的窄带宽导致的低增益值。因此,本工作的目标是提高基本结构的增益和带宽。因此,本文将介绍并比较两种技术:寄生补丁技术和多层技术。第一种方法是增加一些寄生斑块,提出了两种不同的寄生斑块配置方法。评估了驱动斑块和寄生斑块之间的距离。对于第二种技术,在基片上添加一层FR-4,其厚度为0.04 ag,与气隙保持距离。设计和仿真将使用高级设计系统(ADS)工具进行。本文不仅对基本阵列天线和这两种技术进行了比较,还对两种改进结构的仿真结果进行了比较。
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