Islam Kd M Raziul, Choi Sangjo
Department of Electrical Engineering, University of Ulsan, Ulsan 44610, Korea.
Sensors (Basel). 2020 Oct 28;20(21):6142. doi: 10.3390/s20216142.
High transmission efficiency metasurface unit cells have been designed based on surface electric and magnetic impedances derived from Huygens' principle. However, unit cells for low transmission loss (<1 dB) over a wide transmission phase range require at least three metallic layers, which complicates the unit cell design process. In this paper, we introduce high-efficiency Huygens' metasurface unit cell topologies in double-layer FR4 printed circuit board (PCB) by implementing surface electric and magnetic current using the top and bottom metallic patterns and via drills. Eleven unit cells were optimized for wide phase coverage (-150° to 150°) with a low average transmission loss of -0.82 dB at 10 GHz. To demonstrate the high-efficiency of the designed unit cells, we designed and fabricated two focusing lenses with dimensions of near 150 × 150 mm (5λ × 5λ) to focus a spherical beam radiated from short focal distances (f = 100 and 60 mm). The fabricated focusing lens showed 12.87 and 13.58 dB focusing gain for f = 100 and 60 mm at 10 GHz, respectively, with a 1 dB fractional gain bandwidth of near 10%. We expect that the proposed focusing lens based on high-efficiency double-layer metasurface unit cells can help realize compact and high-gain focusing lens-integrated antenna systems.
基于从惠更斯原理导出的表面电和磁阻抗,设计了高传输效率的超表面单元。然而,在宽传输相位范围内实现低传输损耗(<1 dB)的单元至少需要三层金属层,这使得单元设计过程变得复杂。在本文中,我们通过使用顶层和底层金属图案以及过孔在双层FR4印刷电路板(PCB)中实现表面电流和磁流,引入了高效的惠更斯超表面单元拓扑结构。针对宽相位覆盖(-150°至150°)优化了11个单元,在10 GHz时平均传输损耗低至-0.82 dB。为了证明所设计单元的高效率,我们设计并制作了两个尺寸接近150×150 mm(5λ×5λ)的聚焦透镜,用于聚焦从短焦距(f = 100和60 mm)辐射的球面波束。制作的聚焦透镜在10 GHz时,对于f = 100和60 mm分别显示出12.87和13.58 dB的聚焦增益,1 dB分数增益带宽接近10%。我们期望基于高效双层超表面单元的所提出的聚焦透镜能够有助于实现紧凑且高增益的集成聚焦透镜天线系统。