南京理工大学微系统集成技术系,江苏南京 210094
[ "李佩弦 男,1989年5月出生于重庆市.现为南京理工大学电子工程与光电技术学院电子科学与技术专业博士生.主要研究方向为频率选择表面、超表面天线以及低散射天线等.E-mail: 821631439@qq.com" ]
[ "顾鹏飞 男,1990年11月出生于江苏省泰州市.现为南京理工大学微电子学院(集成电路学院)副教授.主要研究方向为计算电磁学、天线与阵列优化设计.中国电子学会会员编号:E190027633S.E-mail: pengfeigu@njust.edu.cn" ]
[ "包华广 男,1987年2月出生于河北省邢台市.现为南京理工大学微电子学院(集成电路学院)副教授.主要研究方向为射频集成电路与EDA设计.中国电子学会会员编号:E190033448M.E-mail: hgbao@njust.edu.cn" ]
[ "何姿 女,1988年12月出生于河北省石家庄市.现为南京理工大学微电子学院(集成电路学院)教授、博士生导师.主要研究方向为计算电磁学及工程应用.获国家优秀青年基金.在国内外期刊发表学术论文90余篇.中国电子学会会员编号:E190023902S.E-mail: 15850554055@163.com" ]
[ "樊振宏 男,1978年2月出生于江苏省泰州市.现为南京理工大学微电子学院(集成电路学院)教授、博士生导师.主要研究方向为计算电磁学、天线与阵列优化设计.E-mail: zhfan@njust.edu.cn" ]
[ "丁大志 男,1979年1月出生于江苏省盐城市.现为南京理工大学微电子学院(集成电路学院)教授、博士生导师.主要研究方向为微波电路与天线、雷达成像与目标识别、电磁兼容分析与设计、目标电磁散射分析.在国内外期刊发表学术论文120篇.中国电子学会会员编号:E190014223M.E-mail: dzding@njust.edu.cn" ]
收稿:2023-11-28,
修回:2024-07-15,
纸质出版:2024-12-25
移动端阅览
李佩弦, 顾鹏飞, 包华广, 等. 基于特征模的宽带高增益超表面天线设计[J]. 电子学报, 2024, 52(12): 3931-3940.
LI Pei-xian, GU Peng-fei, BAO Hua-guang, et al. Design of Broadband and High Gain Metasurface Antenna Based on Characteristic Mode Analysis[J]. Acta Electronica Sinica, 2024, 52(12): 3931-3940.
李佩弦, 顾鹏飞, 包华广, 等. 基于特征模的宽带高增益超表面天线设计[J]. 电子学报, 2024, 52(12): 3931-3940. DOI:10.12263/DZXB.20231107
LI Pei-xian, GU Peng-fei, BAO Hua-guang, et al. Design of Broadband and High Gain Metasurface Antenna Based on Characteristic Mode Analysis[J]. Acta Electronica Sinica, 2024, 52(12): 3931-3940. DOI:10.12263/DZXB.20231107
为了满足C波段军事设备对高性能天线的需求,提出了一款宽带高增益超表面天线.该天线将超表面直接作为辐射器,并将超表面与高阻抗表面结构相结合,在低剖面、小型化的前提下,实现了宽带高增益的高性能;提出了超表面天线的等效电路模型;运用特征模分析,展示了一款天线从“零”到“一”的设计过程.分析了天线工程师关心的加工成本问题,并进行了天线样机的加工与测试.实测结果表明,在5~7.5 GHz(40%)的频段,反射系数小于-10 dB,峰值增益9.9 dBi,实测结果与仿真结果具有较好的一致性.
In the paper
a broadband and high gain metasurface antenna is proposed for meeting the demand of high performance antenna for C-band military equipment. The antenna uses the metasurface directly as the radiator and combines with the high-impedance-surface to achieve the high performance of broadband high gain with low profile and miniaturization. The equivalent circuit of the metasurface antenna is proposed. Characteristic mode analysis is applied to demonstrate the design process of an antenna. The processing cost
which antenna engineers concerned
is analyzed. The prototype antenna is processed and tested. The measured results show that the reflection coefficient is less than -10 dB and the peak gain is 9.9 dBi in the band from 5 GHz to 7.5 GHz (40%)
and the measured results are in good agreement with the simulation results.
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