一种宽带宽角扫描天线设计
Design of a Wide-Band Wide-Angle Scanning Antenna
DOI: 10.12677/JA.2019.84004, PDF,   
作者: 杨志刚, 陈晓萌, 钱剑勋:中国电子科技集团公司第三十八研究所,安徽 合肥
关键词: 微带振子宽带宽角扫描电压驻波比Microstrip Dipole Wide-Band Wide-Angle Scanning VSWR
摘要:
本文提出了一种基于改进型的微带振子型宽带宽角扫描天线。该宽带宽角扫描天线具有频带宽、体积小、结构简单等特点。使用Ansoft HFSS软件建模、仿真和优化,该天线在2.7~3.5 GHz范围内电压驻波比小于2.5,在2~4GHz范围内天线电压驻波比除少数频点的个别扫描角外,驻波比小于3.5,绝对工作带宽达到2 GHz。该天线可广泛适用于大规模相控阵雷达领域。
Abstract: In this paper, a wide-band wide-angle scanning antenna based on improved microstrip dipole type is presented. The wide-band wide-angle scanning antenna has some advantages as wideband, small volume, simple structure and so on. An soft HFSS is used to model, simulate and optimize the antenna. The simulation results show that the VSWR is less than 2.5 from 2.7 - 3.5 GHz, and the VSWR is less than 3.5 from 2 - 4 GHz excepted for a few frequency points with the absolute working bandwidth of 2 GHz. The antenna may be widely used in the field of large-scale phased array radar.
文章引用:杨志刚, 陈晓萌, 钱剑勋. 一种宽带宽角扫描天线设计[J]. 天线学报, 2019, 8(4): 27-31. https://doi.org/10.12677/JA.2019.84004

参考文献

[1] 张荣涛. 软件化雷达系统技术综述[J]. 现代雷达, 2016, 38(10): 1-3.
[2] 朱玉军. 软件化雷达的发展, 内涵理解与实践思路[J]. 科技与信息, 2017-10-15, 141-143.
[3] 鲍尔. 微带天线[M]. 梁联倬, 冠廷辉, 译. 北京: 电子工业出版社, 1985.
[4] 付云起, 张光甫, 莫锦军, 等. 天线理论与工程[M]. 北京: 电子工业出版社, 2015.
[5] 商锋, 牛凡. 北斗S频段圆极化微带振子天线阵的设计[J]. 电子设计工程, 2018, 21(26): 119-123.
[6] 郝一杭, 何芒, 房丽丽. S波段宽频带圆极化微带天线阵列设计[J]. 微波学报, 2016, 32(S1): 92-95.
[7] 张文杰, 李航, 刘洋. 超宽带小型圆极化天线的设计[J]. 天线学报, 2019, 8(1): 1-7.