首页> 外文会议>2018 International Conference on Intelligent Systems and Computer Vision >Array antenna characteristics enhancement for electronic scanning radar application: Parasitic patches and multi layer techniques
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Array antenna characteristics enhancement for electronic scanning radar application: Parasitic patches and multi layer techniques

机译:电子扫描雷达应用中的阵列天线特性增强:寄生贴片和多层技术

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摘要

This paper presents characteristics improvement of patch array antenna used for electronic scanning radar application. This basic array antenna, designed on low cost substrate FR-4 and fed by microstrip technique, consists of 8 patches and operates at frequency 3GHz. However, this structure has two disadvantages a low gain value by dint of using a lossy material FR4 as a substrate, and a narrow bandwidth which is due to microstrip antenna limitations. Hence, the objective of this work is to increase the gain and the bandwidth of this structure. Therefore two techniques will be proposed separately in this paper: parasitic patches and multi layer substrate. For the first one, it consists of adding a defined number of parasitic patches, the distance between driven and parasitic patches will be evaluated to ensure strong coupling between them. For the second technique, a second layer of FR4 coated with an annealed copper of 0.035mm is added to the substrate. An air gap of 0.04x is used to separate between both FR-4 layers. The design and simulation of the array antenna and the modified structures will be performed using Advanced Design System (ADS) software. Simulation results of each technique will be compared first to basic array antenna simulation results and compared thereafter to each other.
机译:本文介绍了用于电子扫描雷达应用的贴片阵列天线的特性改进。这种基本的阵列天线设计在低成本基板FR-4上,并采用微带技术供电,由8个贴片组成,工作频率为3GHz。然而,该结构具有两个缺点,即由于使用有损材料FR4作为衬底而导致的增益值低,以及由于微带天线的限制而导致的带宽窄。因此,这项工作的目的是增加这种结构的增益和带宽。因此,本文将分别提出两种技术:寄生贴片和多层基板。对于第一个,它包括添加定义数量的寄生贴片,将评估驱动和寄生贴片之间的距离,以确保它们之间的强耦合。对于第二种技术,将涂有0.035mm退火铜的FR4第二层添加到基材中。 0.04x的气隙用于分隔两个FR-4层。阵列天线和修改后的结构的设计和仿真将使用Advanced Design System(ADS)软件进行。每种技术的仿真结果将首先与基本阵列天线仿真结果进行比较,然后相互比较。

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