Dual-Band Low Profile Notched Printed UWB Monopole Antenna with Enhanced Bandwidth

Sachin Kumar, S. Palaniswamy, Shobhit Saxena, Rahul Tiwari, Shalini Sah
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Abstract

A planar monopole antenna with enhanced bandwidth and dual-band notching is proposed. The presented UWB monopole antenna is consisting of modified square patch loaded with inverted U-slot to reject WLAN frequencies in the range of 5.15–5.35 and 5.725–5.825 GHz. The ground surface of designed antenna is made up of two L-shaped and two C-shaped slots for achieving wide impedance bandwidth. The rejection of the WiMAX frequencies operating at 3.5 and 5.8 GHz is realized by extruding a C-shaped stub from the modified ground surface. The radiating square plane of the proposed structure is also loaded with six small symmetric shaped square slots for making antenna operable in the 2.4 GHz Bluetooth band. The antenna structure proposed operates from 2.3 GHz to 19.4 GHz band by creating additional resonance even at upper frequencies. The optimization of designed antenna is conducted using FEM based tool Ansys HFSS and found simulated outcomes in a decent match with measured.
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增强带宽的双频低轮廓缺口印刷超宽带单极天线
提出了一种具有增强带宽和双频陷波的平面单极天线。该天线采用带倒u型槽的改进方形贴片,可抑制5.15 ~ 5.35 GHz和5.725 ~ 5.825 GHz频段的无线局域网频率。设计的天线地面由两个l型和两个c型槽组成,以实现较宽的阻抗带宽。对3.5 GHz和5.8 GHz WiMAX频率的抑制是通过从修改后的地面挤出c形短段来实现的。该结构的方形辐射平面还装载了6个对称形状的方形小槽,使天线可在2.4 GHz蓝牙频段中工作。提出的天线结构在2.3 GHz至19.4 GHz频段工作,即使在较高频率也会产生额外的谐振。利用有限元分析工具Ansys HFSS对设计的天线进行了优化,仿真结果与实测结果吻合较好。
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