Taskhiri Mohammad Mahdi, Fakhte Saeed
Department of Electrical and Computer Engineering, Qom University of Technology, Khodakaram Blvd, Old Qom-Tehran, Road, Qom, 1519-37195, Iran.
Sci Rep. 2023 Aug 9;13(1):12907. doi: 10.1038/s41598-023-40024-9.
This manuscript presents a lens antenna with simultaneous broadside and conical beams. The lens is designed for the Ku band using the ray inserting method. The proposed conical radiation pattern is broadband due to good matching with the source and surroundings. The simulation is conducted using the CST microwave studio solver. Instead of complex antenna shapes used in other works, a simple circular patch ring and RF connector are used as the lens feed to generate broadside and omnidirectional conical patterns, respectively. To validate the performance of the designed lens and its two-port feed antenna, the lens structure is realized and fabricated using the 3D printing method. Polyethylene terephthalate glycol (PETG) plastic material is utilized for constructing the lens in this work. The electromagnetic characteristics of PETG in the Ku band are accurately measured. The results of simulations and experiments demonstrate the good performance of the designed lens over a wide frequency bandwidth. The advantage of this designed structure over other works is its high gain and broad bandwidth.
本文介绍了一种具有同时产生宽边波束和锥形波束功能的透镜天线。该透镜采用射线插入法设计用于Ku波段。由于与源和周围环境匹配良好,所提出的锥形辐射方向图具有宽带特性。使用CST微波工作室求解器进行了仿真。与其他工作中使用的复杂天线形状不同,一个简单的圆形贴片环和射频连接器分别用作透镜馈源,以产生宽边波束和全向锥形方向图。为了验证所设计透镜及其两端口馈电天线的性能,采用3D打印方法实现并制作了透镜结构。在这项工作中,使用聚对苯二甲酸乙二醇酯二醇(PETG)塑料材料来构建透镜。准确测量了PETG在Ku波段的电磁特性。仿真和实验结果表明,所设计的透镜在很宽的频率带宽内具有良好的性能。这种设计结构相对于其他工作的优势在于其高增益和宽带宽。