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Switched parasitic dielectric resonator antenna array using capacitor loading for 5G Applications

机译:使用电容器负载的5G应用的开关寄生介电谐振器天线阵列

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This paper presents a brief account of the findings on a switched parasitic dielectric resonator antenna (DRA) array excited in a higher-order mode. The scanning phase can be changed by using switching technique and capacitor loading at the parasitic element. The driven DR and parasitic DRs have a dielectric constant of 10 and were fed by a microstrip slot aperture. The impact of mutual coupling on the reflection coefficient was examined through a numerical calculation which combines both ANSYS HFSS and MATLAB. This phased array was shown to be able to steer the antenna beam from −26 degrees to +26 degrees at 15 GHz, which is considered suitable for 5G applications. The impedance matching was maintained at all beam steering angles and a bandwidth of 2.6 GHz has been achieved.
机译:本文简要介绍了在高阶模式下激发的开关寄生介电共振器天线(DRA)阵列的发现。可以通过使用开关技术和寄生元件上的电容器负载来改变扫描相位。驱动的DR和寄生DR的介电常数为10,并由微带缝隙孔馈送。通过将ANSYS HFSS和MATLAB结合起来的数值计算,研究了互耦合对反射系数的影响。事实证明,该相控阵能够在15 GHz的频率下将天线波束从-26度转向+26度,这被认为适用于5G应用。在所有波束转向角处均保持阻抗匹配,并且已达到2.6 GHz的带宽。

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