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Design of a multi-band frequency reconfigurable planar monopole antenna using truncated ground plane for Wi-Fi, WLAN and WiMAX applications

机译:用于Wi-Fi,WLAN和WiMAX应用的采用截断接地平面的多频带频率可重构平面单极天线设计

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Reconfigurable or switchable antennas are potential candidates for modern wireless and portable devices to operate at more than one frequency bands, polarizations and scanning radiation patterns in accordance with user requirements. This paper describes the design of multi-band frequency reconfigurable 7-shaped planar monopole antenna, employing 1.6 mm thicker FR4 as a substrate material and a truncated metal ground plane. The antenna operates in single as well as dual-band frequency modes depending on the state of the switch used. The proposed antenna operate in the dual frequency mode (Wi-Fi at 2.45 GHz and WLAN at 5.4 GHz) and single frequency mode (WiMAX at 3.5 GHz) when the optical switch is in ON and OFF states respectively. The bandwidths achieved are 20, 39 and 9.3% centered at 2.4, 3.5 and 5.4 GHz, frequencies respectively. The antenna is impedance matched (i.e. input impedance=51~54 Ω) resulting in VSWR<; 1.3 for the three frequency bands. Satisfactory gains of 1.92, 2.41 and 3.02 dBi and efficiencies of 86.5, 85 and 74.6% are attained at 2.45, 3.5 and 5.4 GHz frequencies respectively. Printed monopole reconfigured antennas are small, low profile and light-weight which can be used in portable electronics (mobile phones, iPads, PDAs and laptops) and wearable applications (safety and rescue operations). The antenna scattering and far-field parameters are evaluated using a numerical Finite Integration Technique (FIT) and Finite Element Method (FEM) employed in CST MWS and HFSS, respectively.
机译:可重配置或可切换天线是现代无线和便携式设备根据用户需求在不止一个频带,极化和扫描辐射方向图上运行的潜在候选者。本文介绍了多频带频率可重构7形平面单极天线的设计,该天线采用1.6mm厚的FR4作为基底材料和截短的金属接地层。根据所用开关的状态,天线以单频和双频模式工作。当光开关分别处于ON和OFF状态时,建议的天线工作在双频模式(2.45 GHz的Wi-Fi和5.4 GHz的WLAN)和单频模式(3.5 GHz的WiMAX)。分别以2.4、3.5和5.4 GHz频率为中心,获得的带宽分别为20%,39%和9.3%。天线阻抗匹配(即输入阻抗= 51〜54Ω),导致VSWR <;三个频段为1.3。在2.45、3.5和5.4 GHz频率下,分别获得了1.92、2.41和3.02 dBi的令人满意的增益,以及86.5、85和74.6%的效率。印刷单极可重构天线小巧,外形小巧,重量轻,可用于便携式电子产品(移动电话,iPad,PDA和笔记本电脑)和可穿戴应用(安全和救援操作)。分别使用CST MWS和HFSS中使用的数值有限积分技术(FIT)和有限元方法(FEM)评估天线散射和远场参数。

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