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Design of a Triple Band Slit-loaded Patch Antenna with DGS for Bandwidth Enhancement

机译:具有DGS带宽增强的三频带狭缝加载贴片天线的设计

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This paper demonstrates the design and result of a low profile wide band miniaturized slit-loaded microstrip patch antenna with defected ground structures(DGS) for wireless applications. The proposed antenna is coaxially probe fed that operates at 5.5 GHz and has an array of rectangular slits etched on the patch and a pair of square-shaped dumbbell DGS loaded into the ground plane. The bandwidth of the slit-loaded microstrip patch antenna is 12 %, whereas it increases up to 17 % when DGS is loaded into the ground plane. The proposed compact antenna resonates at multiple frequencies between 1 and 9 GHz frequency range, at 4.84, 5.96, and 6.34 GHz with a bandwidth of 330, 150, and 460 MHz having return loss of ?17.2, ?18.5, and ?27.3 dB, respectively. All the antenna geometries in this paper are simulated using an electromagnetic simulation tool named CADFEKO. The proposed multiband antenna finds useful applications with an improved performance simultaneously in W-LAN (4.8–5.8 GHz) and satellite communication bands (5.92–6.42 GHz). The plots of various antenna parameters such as return loss, voltage standing wave ratio (VSWR), gain, and bandwidth of the proposed antenna have been observed with and without DGS and the analysis of the simulated results shows that the proposed slit-loaded antenna with DGS is more efficient than conventional rectangular microstrip patch antennas (CRMPA) in terms of bandwidth of operation and miniaturization.
机译:本文演示了具有用于无线应用的缺陷的地面结构(DGS)的低轮廓宽带小型狭缝加载的微带贴片天线的设计和结果。所提出的天线是同轴探针,其在5.5GHz下操作,并且在贴片上蚀刻一组矩形狭缝,并且一对方形哑铃DGS装入接地平面上。狭缝的微带贴片天线的带宽为12%,而当DG被装载到接地平面时,它增加到17%。所提出的紧凑型天线在1到9个GHz频率范围内的多个频率,4.84,5.96和6.34GHz,带宽为330,150和460 MHz,具有回报损失?17.2,?18.5和?27.3 dB,分别。本文中的所有天线几何形状都是使用名为Cadfeko的电磁仿真工具进行模拟。所提出的多频带天线在W-LAN(4.8-5.8 GHz)和卫星通信频段(5.92-6.42GHz)中同时找到具有改进性能的有用应用程序。已经观察到诸如返回损耗,电压驻波比(VSWR),增益和带宽的各种天线参数的曲线已经观察到所提出的天线的并且没有DGS,并且模拟结果的分析表明,所提出的狭缝加载的天线在运行和小型化的带宽方面,DGS比传统的矩形微带贴片天线(CRMPA)更有效。

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