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作 者:倪国旗[1,2] 梁军[1] 余白平[2] 张涛[1]
机构地区:[1]桂林电子科技大学信息与通信学院,广西桂林541004 [2]桂林空军学院,广西桂林541003
出 处:《电讯技术》2013年第6期786-790,共5页Telecommunication Engineering
基 金:广西回国基金项目(桂科回0991021)~~
摘 要:设计了一个中心频率为6.52GHz具有宽频带高增益特性的16单元微带天线阵。综合运用H型缝隙耦合馈电技术、插入空气层技术和在贴片天线上切角的方法展宽天线的带宽。该天线阵由两层介质板构成,采用反相馈电可抑制高次模的耦合,交叉极化电平低。使用三维电磁场仿真软件AnsoftHFSS对该天线阵进行仿真优化,并根据仿真结果做成实物加以验证。对实物的测量结果表明:天线阵仿真阻抗带宽(S11≤-10 dB)为21.5%,增益为19.85 dB;实测阻抗带宽(S11≤-10 dB)为22.5%,增益为18.8 dB。天线阵性能良好,能满足工程实际要求。A broadband and high gain 16-element microstrip array antenna working at 6.52 GHz is designed in this paper. The H-shaped aperture-coupled feeding, inserting the air layer technology and cutting down squares at the patch antenna are adopted to achieve wider bandwidths. The antenna array is consisted of double-layered substrates. The anti-phase feeding technique that contributes to suppress the higher order modes and decrease cross-polarization is also applied. A 3D electromagnetic software(Ansoft HFSS) is used to simulate and optimize the antenna. According to simulated and optimized results, antenna array is manufactured. The simulation results show that the impedance bandwidth of the microstrip array antenna is as good as 21.5% (Sn ~〈 - 10 dB) and the gain is 19.85 dB. And the measured results is that the impedance bandwidth of the mierostrip array antenna is as good as 22.5%( $1t ~〈 - 10 dB) and the gain is 18.8 dB. Therefore, the antenna array with good perfor- mance can meet the practical requirements.
关 键 词:微带天线阵 贴片天线 缝隙耦合馈电 宽频带 高增益 切角
分 类 号:TN822[电子电信—信息与通信工程]
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