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一种提高套筒天线宽带匹配特性的新方法 被引量:2

A New method to Improve Broadband Matching Characteristics of Sleeve Antenna
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摘要 套筒天线的发现一定程度上拓展了线天线的带宽,但是传统的套筒天线在VSWR<8的条件下带宽只有4:1。文献[1]提出了一种新型的宽带套筒天线,在VSWR<1.5的情况下可以达到1.81:1的阻抗带宽。本文对这种新型宽带套筒天线中特殊的结构进行讨论,主要讨论端部加载对该新型天线S11的影响,经研究发现端部加载可以很大程度上拓展天线带宽,在同样尺寸的情况下将传统套筒天线的阻抗带宽(VSWR<1.5)由1.03:1拓展到1.81:1,即带宽拓展了75.7%。在S11<-10d B的条件下由1.09:1拓展到2.05:1,即带宽拓宽了88.1%,在天线没有小型化处理时可以拓展到3.81:1。因此这为天线阻抗的良好匹配提供一种新的方法,同时也很好的弥补了传统套筒天线结构上不连续的不足。 The invention of sleeve antenna expands the bandwidth of wire antenna to some extent, but the bandwidth of traditional sleeve antenna can only reach 4:1 on the condition of VSWR〈8. Literature proposed a new type of sleeve antenna, whose impedance bandwidth can reach up to 1.81:1 on the condition of VSWR〈1.5. This paper discusses the structure of this special antenna and mainly focuses on the impact of end-loading on the antenna's S 11. Some research reveals that the end-loading can notably expand the bandwidth of antenna. With the similar size, this new broadband sleeve antenna can expand the bandwidth of traditional sleeve antenna from 1.03:1 to 1.81:l(at VSWR〈I.5), which means an expansion of 75.7% in bandwidth. And on the condition of Sll〈-10dB, the expansion from 1.09:1 to 2.05:1 is achieved, i.e. an improvement of 88.1%, and on the condition of antenna not being miniature processed the bandwidth can be expanded up to 3.81:1. Thus it provides a new method to improve antenna's impedance matching characteristics and broaden antenna's impedance bandwidth. This new structure also compensate for the deficiency of the traditional sleeve antenna's discontinuity in structure.
出处 《电子技术(上海)》 2015年第1期5-7,共3页 Electronic Technology
基金 国家自然科学基金项目:61327803
关键词 端部加载技术 宽带天线 宽带匹配特性 套筒天线 VSWR〈1.5 end-loading technology broadband antenna broadband matching characteristics sleeve antenna VSWR〈1.5
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参考文献8

  • 1Bin Yuan, Nannan Liu, Tianhao Peng, et al. A study of dual-sleeve broadband antenna based on end- loaded technology[C]//Antennas and Propagation Society International Symposium (APSURSI), 2014 IEEE: 197-198.
  • 2王忍,俞钰峰,冯建杰.一种宽带高增益双套筒单极子天线[J].通信对抗,2013,32(4):43-46. 被引量:10
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  • 4李峰,李铁军,魏亮.一种结构紧凑带阻抗补偿的新型UHF套筒天线[J].现代电子技术,2014,37(7):89-91. 被引量:3
  • 5张涛,傅光,张志亚,陈曦,梅征.一种宽带印刷套筒天线的设计[J].微波学报,2010,26(S2):197-199. 被引量:3
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二级参考文献7

  • 1WONG J L,KING H E. An experimental study of a balun-fedopen sleeve dipole in front of a metallic reflector [J]. IEEETransactions on Antennas Propagation,1972,20:201-208.
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  • 6王会华,程崇虎.两种宽缝超宽带天线的脉冲波形保真度比较[J].南京邮电大学学报(自然科学版),2008,28(6):56-60. 被引量:3
  • 7郭景丽,贺秀莲,刘其中.有限圆盘地面上套筒单极子天线[J].西安电子科技大学学报,2004,31(3):417-421. 被引量:10

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