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Wideband Dual-Frequency Antenna With Large Frequency Ratio

机译:宽频比宽带双频天线

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This communication investigates a new type of compact dual-frequency antenna, which is realized by using a single rectangular dielectric block with a groove along its center. It integrates a microwave dielectric resonator antenna (DRA) with a millimeter-wave Fabry-Perot resonator antenna (FPRA). The DRA is fabricated out of a dielectric block, excited by a vertical conducting strip on its side wall. The FPRA is realized by sticking the adhesive copper tape on the surfaces of the groove, forming a pair of parallel plates and the ground plane. The FPRA is excited by a sleeve-integrated L-probe, which suppresses the cross-polar fields and widens the bandwidth of the FPRA. To validate the idea, a dual-frequency antenna, covering both the 2.4 and 24 GHz ISM bands, was designed and measured. The DRA operates in its TEx 111 mode, whereas the FPRA operates in its fundamental mode. Next, a wideband dual-frequency antenna was designed to further cover the 4G and future 5G frequency bands. Both of the TEx 111 and TEx 113 modes of the DRA are excited, broadening the bandwidth in the microwave band. Also, the FPRA mode and two L-probe modes are simultaneously excited to increase the bandwidth in the millimeter-waveband. The S-parameters, radiation patterns, antenna gains, and antenna efficiencies of the dual-frequency antennas are studied in detail. Reasonable agreement between the measured and simulated results is observed.
机译:本通讯研究了一种新型的紧凑型双频天线,该天线是通过使用单个矩形介质块实现的,该矩形介质块的中心有一条凹槽。它集成了微波介质谐振器天线(DRA)和毫米波Fabry-Perot谐振器天线(FPRA)。 DRA由介电块制成,并由其侧壁上的垂直导电条激发。 FPRA是通过将铜胶带粘贴在凹槽的表面上,形成一对平行板和接地平面来实现的。 FPRA由与套筒集成的L探针激发,该探针可抑制交叉极化场并加宽FPRA的带宽。为了验证该想法,设计并测量了覆盖2.4 GHz和24 GHz ISM频段的双频天线。 DRA在其TEx 111模式下运行,而FPRA在其基本模式下运行。接下来,设计了宽带双频天线以进一步覆盖4G和未来的5G频段。 DRA的TEx 111和TEx 113模式都被激发,从而扩展了微波频带的带宽。同样,同时激发FPRA模式和两个L探针模式以增加毫米波波段的带宽。详细研究了双频天线的S参数,辐射方向图,天线增益和天线效率。可以观察到测量结果与模拟结果之间的合理一致性。

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