Design multiband planar printed monopole antenna with Minkowski and Lollipop defected parasitic structure (DPS) for wireless communication system

M. H. Ramli, M. Abd Aziz, M. Othman, A. H. Dahalan
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Abstract

A multiband planar printed monopole antenna with Minkowski and Lollipop defected parasitic structure (DPS) for wireless communication system is proposed. The proposed antenna can create and work effectively to covers triband resonance frequencies at 2.4, 3.6 and 5.8 GHz within WLAN/WiMAX range in wireless communication system application. The Minkowski and Lollipop DPS has been place in front of and back of the multiband antenna that easily fed by using a 50 Ω microstrip line. The parametric study has been performed to analyze the best range of DPS from the proposed antenna. The simulated and measured impedance bandwidths for 10 dB return loss at first, second and third operating bands can be seen at (135 and 456) MHz, (380 and 272) MHz and (198 and 283) MHz respectively. The additional DPS helps to improve the return loss, bandwidth, gain, directivity. The simulation and measurement performance are well compared and discussed.
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基于Minkowski和Lollipop缺陷寄生结构(DPS)设计多波段平面印刷单极天线用于无线通信系统
提出了一种基于Minkowski和Lollipop缺陷寄生结构(DPS)的多波段平面印刷单极天线。在无线通信系统应用中,该天线能够在WLAN/WiMAX范围内有效地覆盖2.4、3.6和5.8 GHz的三频谐振频率。Minkowski和Lollipop DPS被放置在多波段天线的前后,通过使用50 Ω微带线很容易馈电。通过参数化研究,分析了该天线的最佳DPS范围。在第一、第二和第三工作频段,10db回波损耗的模拟和测量阻抗带宽分别为(135和456)MHz、(380和272)MHz和(198和283)MHz。额外的DPS有助于改善回波损耗、带宽、增益和指向性。对仿真性能和测量性能进行了比较和讨论。
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