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Steerable Higher-order Mode Dielectric Resonator Antenna with Parasitic Elements for 5G Applications

机译:适用于5G应用的带有寄生元件的可控高阶模介电谐振天线

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摘要

This paper presents the findings of a steerable higher-order mode (TEy1δ3) dielectric resonator antenna with parasitic elements. The beam steering was successfully achieved by switching the termination capacitor on the parasitic element. In this light, all of the dielectric resonator antennas (DRAs) have the same dielectric permittivity similar to that of 10 and was excited by a 50Ω microstrip with a narrow aperture. The effect of the mutual coupling on the radiation pattern and the reflection coefficient, as well as the array factor were investigated clearly using MATLAB ver. 2014b and ANSYS HFSS ver. 16. As the result, the antenna beam of the proposed DRA array managed to steer from -32° to +32° at 15 GHz. Furthermore, the measured antenna array showed the maximum gain of 9.25 dBi and the reflection coefficients which are less than -10 dB with the bandwidth more than 1.3 GHz, which is viewed as desirable for Device-to-Device communication (D2D) in 5G Internet of Things (IoT) applications.
机译:本文介绍了带有寄生元件的可控高阶模(TEy1δ3)介质谐振器天线的发现。通过切换寄生元件上的终端电容器成功实现了光束控制。在这种情况下,所有介电共振器天线(DRA)的介电常数均与10相同,并由孔径狭窄的50Ω微带激发。使用MATLAB ver可以清楚地研究互耦对辐射方向图和反射系数以及阵列因子的影响。 2014b和ANSYS HFSS ver。 16.结果,建议的DRA阵列的天线射束在15 GHz时设法从-32°转向+ 32°。此外,测得的天线阵列显示出最大增益为9.25 dBi,并且反射系数在带宽大于1.3 GHz时小于-10 dB,这被认为是5G互联网中设备到设备通信(D2D)的理想选择物联网(IoT)应用程序。

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