Dual Notched-Band Crescent Moon Dielectric Resonator Antenna

Mohamed Debab, A. Bendaoudi, Z. Mahdjoub
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Abstract

In this article, a dual-band notched ultra-wideband (UWB) dielectric resonator antenna is proposed. The antenna structure consists of Crescent Moon Dielectric Resonator (CMDR) fed by a stepped microstrip monopole printed antenna, partial ground plane, and an I-shaped stub. The Crescent Moon dielectric resonator is placed on the microstrip monopole printed antenna to achieve wide impedance bandwidth, and the I-shaped stub is utilized to improve impedance bandwidth for the WiMAX band. A comprehensive parametric study is carried out using HFSS software to achieve the optimum antenna performance and optimize the bandwidth of the proposed antenna. The entire band is useful with two filtered bands at 5.5 GHz and 6.8 GHz by the creation of notches. The band’s rejection, WLAN band (5.2–5.7 GHz), and the downlink frequency band of ITU 7 GHz-band for satellite communication (6.5–7.3 GHz) is realized by inserting G-shaped and C-shaped slots in the ground. The simulation results demonstrate that the proposed CMDR antenna achieves satisfactory UWB performance, with an impedance bandwidth of around 88.7%, covers the frequency band of 3.2 - 8.3 GHz, excluding a rejection band for the WLAN and ITU 7 GHz band. The CMDR is simulated using HFSS and CST high-frequency simulators.
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双陷波带新月介电谐振器天线
本文提出了一种双频段陷波超宽带(UWB)介质谐振器天线。该天线结构由阶梯式微带单极印刷天线馈电的新月介电谐振器(CMDR)、部分地平面和i型短段组成。将Crescent Moon介电谐振器置于微带单极印刷天线上,实现较宽的阻抗带宽,并利用i型短段提高WiMAX频段的阻抗带宽。利用HFSS软件进行了全面的参数化研究,以达到最佳的天线性能和优化天线的带宽。通过创建陷波,整个频带可用于5.5 GHz和6.8 GHz的两个滤波频带。该频段的抑制、WLAN频段(5.2-5.7 GHz)和ITU 7 GHz卫星通信下行频段(6.5-7.3 GHz)是通过在地面插入g型和c型槽实现的。仿真结果表明,所提出的CMDR天线达到了满意的超宽带性能,阻抗带宽约为88.7%,覆盖3.2 ~ 8.3 GHz频段,不包括WLAN和ITU 7 GHz频段的抑制频段。利用HFSS和CST高频模拟器对CMDR进行了仿真。
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