x波段双共振下的宽带虹膜贴片天线:MOM-GEC方法

M. Abdi, T. Aguili
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引用次数: 0

摘要

本文建立了一种微带贴片天线的模型,该天线采用端壁虹膜通过地平面的波导馈电。为了克服微带贴片天线的窄带带宽问题,提出了虹膜馈电技术。虹膜的大小使其共振,随后天线在与虹膜和贴片相关的两种模式的融合下工作,从而产生具有双共振的宽带辐射特性。测量表明为单带宽双共振型,辐射带宽为(8ghz -10.6 GHz)。为了说明虹膜馈电技术对微带贴片天线带宽的影响,与目前提出的各种x波段带宽增强技术进行了比较。提出的原型尺寸为1.76λ0 X 1.65λ0 X 1.29λ0,比几个设计更紧凑。它的分数带宽为27.9%,从而以最简单的设计制造提供了最宽带宽的原型。在电磁建模方面,为了能够进行严格的电磁模拟,本工作面向使用混合MOM-GEC方法。研究发现,MOM-GEC模型在内存需求方面效率更高,速度大约是HFSS模拟器软件的四倍。
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Wideband Iris-Fed Patch Antenna Under Operation of Dual-Resonance for X-band Applications: MOM-GEC Approach
In this paper, a microstrip patch antenna fed by a waveguide using an end-wall iris through ground plane has been modelled. The iris feed technique was proposed to overcome the narrow bandwidth problem of microstrip patch antenna. The iris is sized so that it is resonant and subsequently the antenna operates under the fusion of two modes relating to the iris and the patch, resulting in a wideband radiation characteristic with dual resonance. Measurement demonstrates the single bandwidth dual resonance type and the radiation bandwidth of (8 GHz-10.6 GHz). In order to show the impact of the iris feed technique on microstrip patch antenna’s bandwidth, a comparison with some state-of-the-art works proposing various bandwidth enhancement techniques in the X-band is made. The proposed prototype, with a size of 1.76λ0 X 1.65λ0 X 1.29λ0 , is more compact than several designs. It has a fractional bandwidth of 27.9%, thus it presents the prototype with the widest bandwidth with the simplest design fabrication. With regard to the electromagnetic modelling, this work is oriented towards the use of the hybrid MOM-GEC method in order to be able to perform a rigorous electromagnetic. It has been found that the MOM-GEC model is more efficient in terms of memory requirements and approximately four times faster than HFSS simulator software.
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