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Tall microstrip transmission lines for dielectric resonator antenna applications

机译:高微带传输线,用于介电共振器天线应用

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Dielectric resonator antennas (DRAs) excited by tall microstrip transmission lines (TMLs) are investigated. Two different TML-DRA structures are proposed and the impact of TML parameters on the antenna performance is studied when low-loss and lossy substrates are used. To validate the effectiveness of this approach, a set of prototype antennas was fabricated, measured and compared with simulation results. A good agreement is obtained. It is found that by adjusting TML parameters, excellent impedance matching and coupling to low-permittivity DRAs are achieved even on high-permittivity substrates. The impedance bandwidth of a single-mode simple-shape rectangular DRA with Erd = 9 can be as high as 25%. The radiation efficiency of the antenna on extremely lossy substrates is significantly improved and based on the measured results over 80% efficiency with a gain ranging from 4.2 to 5.5 dBi along the impedance bandwidth can be expected. Since TML is a low-loss transmission line, the DRA is a low-loss radiator and low-permittivity DRAs can be well matched by TML, the TML-DRA forms an excellent wideband antenna system with high radiation efficiency.
机译:研究了高微带传输线(TML)激发的介电共振器天线(DRA)。提出了两种不同的TML-DRA结构,并研究了当使用低损耗和有损耗的基板时TML参数对天线性能的影响。为了验证这种方法的有效性,制造了一组原型天线,进行了测量并与仿真结果进行了比较。获得了良好的协议。发现通过调整TML参数,即使在高介电常数的基板上,也可以实现出色的阻抗匹配以及与低介电常数DRA的耦合。 Erd = 9的单模简单形状矩形DRA的阻抗带宽可以高达25%。天线在极有损耗的基板上的辐射效率得到了显着提高,并且基于测量结果,可以看到超过80%的效率以及沿着阻抗带宽的4.2至5.5 dBi的增益。由于TML是低损耗的传输线,DRA是低损耗的辐射器,并且低介电常数DRA可以与TML很好地匹配,因此TML-DRA形成了一个具有高辐射效率的出色宽带天线系统。

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