Gain Enhancement of $4\times 4$ mm-Wave Patch Array with Dielectric Shells and Metamaterial Lens: A Comparative Study

M. A., Ashish K Adiga, Abhishek K Manjunath, Yashwanth Giddegowda, Rohini G. Bhatkoorse
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Abstract

In this work, a comparative study between multilayered shells and multilayered metamaterial lens for gain enhancement of a $4\times 4$ array is carried out. A $4\times 4$ rectangular patch antenna array operating at 24GHz is designed. The patch has perturbations at the corners to achieve circular polarization (CP). The array has been designed on RT Duroid 5880 substrate of thickness 0.508mm. The antenna array is edge fed with unequally truncated corners on both diagonals. Initial design is analytically calculated using predefined equations, followed by several iterations to further refine i t. The $4\times 4$ a rray a chieved a gain of 17.3dB and an axial ratio of 0.55dB. The ARB (Axial Ratio Bandwidth) for the same design is 2.54% and IB(Impedance Bandwidth) is 6.532%. The narrower ARB is a compromise for obtaining the higher gain. Further to enhance the gain of $4\times 4$ array antenna, two case studies are considered. In the first case, four layered dielectric hemispherical shells is used and in the second case, a 4 layered metamaterial Lens is employed. A gain enhancement of 5.1dB and 4dB is observed in 4-layered dielectric shells and 4-layered metamaterial lens respectively. All the above results have been obtained by simulating with EM flow solver Ansys HFSS. As the dielectric shells developed has a wide band behaviour compared to the metamaterial lenses, the developed design can be extensively used for MIMO antennas for millimeter wave applications and 5G applications in FR2 band for gain enhancement.
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介电壳和超材料透镜对4 × 4 mm波贴片阵列增益增强的比较研究
在这项工作中,进行了多层壳和多层超材料透镜对$4\ × 4$阵列增益增强的比较研究。设计了一种工作频率为24GHz的4 × 4矩形贴片天线阵列。贴片在角处有微扰以实现圆偏振。阵列设计在厚度为0.508mm的RT Duroid 5880衬底上。天线阵列在两个对角线上以不相等的截断角进行边缘馈电。初始设计是使用预定义的方程进行解析计算的,随后进行了几次迭代以进一步完善它。4\ × 4$ a阵列获得了17.3dB的增益和0.55dB的轴向比。相同设计的轴比带宽(ARB)为2.54%,阻抗带宽(IB)为6.532%。较窄的ARB是获得较高增益的折衷方案。为了进一步提高4\ × 4$阵列天线的增益,本文考虑了两个实例。在第一种情况下,采用四层介质半球形壳,在第二种情况下,采用四层超材料透镜。在4层介质壳和4层超材料透镜中分别观察到5.1dB和4dB的增益增强。以上结果均通过电磁流求解器Ansys HFSS的仿真得到。由于与超材料透镜相比,所开发的介电壳具有宽带特性,因此所开发的设计可广泛用于毫米波应用的MIMO天线和FR2频段的5G应用,以增强增益。
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