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New High-Gain Differential-Fed Dual-Polarized Filtering Microstrip Antenna for 5G Applications

机译:适用于5G应用的新型高增益差分馈电双极化滤波微带天线

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In this paper, a new high-gain differential-fed dual-polarized microstrip filtering antenna with high commonmode rejection is presented. Two differential pairs of probe feeding ports are utilized to provide differentially exciting signals. The filtering response is achieved by introducing four symmetrical open-loop ring resonator slots on the top layer surrounding the four excitation ports of the patch antenna. The resonators can produce nulls at the low edge of the passband bandwidth with high gain and wide stopband characteristics. Because of the strictly symmetric configuration of the proposed antenna, the design is studied and analyzed only in one polarization configuration. Compared with other presented filtering antenna designs, the proposed design has not only high gain and dual-polarized characteristics but also introduces high efficiency and much lower cross-polarization level due to the differentially driven ports. The filtering antenna is designed, simulated and optimized using computer simulation technology (CST) software and is implemented on a Rogers TMM3 substrate with a relative dielectric constant of 3.45. Also, the antenna has a single layer substrate with a height of 0.035 of the free space wavelength and operating at 3.54 GHz for 5G applications.
机译:本文提出了一种具有高共模抑制比的新型高增益差分馈电双极化微带滤波天线。利用两个差分对的探针馈送端口来提供差分激励信号。滤波响应是通过在贴片天线的四个激励端口周围的顶层引入四个对称的开环环形谐振腔来实现的。谐振器可以在通带带宽的低边缘处产生零点,并具有高增益和宽阻带特性。由于所提出天线的严格对称配置,因此仅在一种极化配置中对设计进行了研究和分析。与其他提出的滤波天线设计相比,该设计不仅具有高增益和双极化特性,而且由于差分驱动端口而引入了高效率和更低的交叉极化水平。滤波天线使用计算机仿真技术(CST)软件进行设计,仿真和优化,并在相对介电常数为3.45的Rogers TMM3基板上实现。同样,该天线具有单层基板,其自由空间波长的高度为0.035,并且在5G应用中工作于3.54 GHz。

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