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Optimization of a broadband directional gain microstrip patch antenna for X-Ku band application

机译:针对X-Ku频段应用的宽带定向增益微带贴片天线的优化

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摘要

In this paper, optimization of a microstrip patch antenna is presented. The optimization uses a genetic algorithm in the IE3D? Simulator. The optimization is done in several steps, first by changing the position of parasitic patches on the top layer, second by placing a feeding patch at the middle layer of geometry, and third by indirect coupling between the top and middle layer patches. Overall we have performed many possible iterations and found appropriate geometry. From this appropriate geometry we have achieved maximum directional gain (6.2-8.8 dBi) over a 6 GHz bandwidth slot, 38% impedance bandwidth of the X-band and 14.8% impedance bandwidth of the Ku-band. The broadband frequency of operation is demonstrated by single geometry. The geometry of a single probe fed rectangular microstrip antenna incorporating a slot, gap coupled with a parasitic and an active patch on geometry, has been studied. We have investigated the height between active and parasitic patches as 0.0525λ. and the height between parasitic patches itself as 0.0525A. We have investigated the enhancement in maximum directional gain by stacking geometry with one active patch and two parasitic patches of different dimensions. This optimized antenna is used for X-band and Ku-band applications. The hardware validation and simulation results are matched to the proposed design.
机译:在本文中,提出了微带贴片天线的优化。优化在IE3D中使用遗传算法吗?模拟器。优化过程分几步进行,首先是通过更改顶层上的寄生贴片的位置,其次是在几何形状的中间层放置一个馈电贴片,第三是通过顶层和中间层贴片之间的间接耦合。总体而言,我们执行了许多可能的迭代并找到了合适的几何形状。通过这种合适的几何结构,我们在6 GHz带宽插槽,X波段38%的阻抗带宽和Ku波段14.8%的阻抗带宽上实现了最大定向增益(6.2-8.8 dBi)。操作的宽带频率由单个几何图形演示。已经研究了单探针馈电矩形微带天线的几何形状,该天线具有缝隙,间隙,寄生和有源贴片。我们已经研究了有源和寄生贴片之间的高度为0.0525λ。寄生贴片之间的高度为0.0525A。我们已经研究了通过堆叠具有一个有源贴片和两个不同尺寸的寄生贴片的几何形状来最大定向增益的增强。这种优化的天线用于X波段和Ku波段应用。硬件验证和仿真结果与提出的设计相匹配。

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