太赫兹科学与电子信息学报, 2022, 20 (7): 691, 网络出版: 2022-08-30  

带有开口谐振环引向器的新型端射天线设计

A novel design of end-fire antenna with Split-Ring Resonants director
作者单位
南京信息工程大学电子与信息工程学院,江苏南京 210044
摘要
设计一种带有开口谐振环(SRRs)引向器的新型端射天线。天线由反射板、地板、辐射单极子和开口谐振环组成。天线的反射板结构使天线在低频处阻抗匹配,有效地提高了天线带宽; 用六对开口谐振环结构作为天线的引向器,很好地实现了天线的高增益。仿真和实测结果表明,天线阻抗带宽达到 73.7%(2~4.21 GHz),增益为 4.3~10.3 dB; 在天线的带宽内,天线的辐射方向图稳定,设计的天线满足 S波段无线通信领域的需求。
Abstract
A novel end-fire antenna with Split-Ring Resonants(SRRs) is designed. The antenna consists of a reflector, a floor, a radiation monopole and SSRs. By using the reflector structure, the impedance matching of the antenna is realized at low frequency, and the bandwidth of the antenna is improved effectively. The six pairs of SSRs structure are used as the director of the antenna to achieve the high gain of the antenna. The results of simulation and measurement show that the impedance bandwidth of the antenna is 73.7%(2~4.21 GHz), the gain is 4.3~10.3 dB. The radiation pattern of the antenna is stable within the bandwidth of the antenna. Therefore, the designed antenna meets the requirements of S-band wireless communication field.
参考文献

[1] LIU D,XUE Z,LI W,et al. Plate end-fire antenna design based on genetic algorithm[C]// International Symposium on Antennas. Xi'an,China:IEEE, 2012:179-182.

[2] SILVA I B,SILVA S G,SILVA M F,et al.Quasi-Yagi microstrip antenna device design for directive wideband ISM application[J]. Microwave and Optical Technology Letters, 2017,59(12):3042-3046.

[3] SHI J,ZHU L,LIU N,et al. A novel microstrip Yagi antenna with an improved end-fire radiation pattern under operation of the TM20 mode[J]. International Journal of RF and Microwave Computer-Aided Engineering, 2019,29(8):e21789.

[4] WU J, ZHAO Z, NIE Z, et al. Design of a wideband planar printed quasi-yagi antenna using stepped connection structure[J]. IEEE Transactions on Antennas and Propagation, 2014,62(6):3431-3435.

[5] YUAN L, TANG W, LIU J, et al. Miniaturized broadband quasi.Yagi antenna for wireless communication and recognition[C]// International Symposium on Intelligent Signal Processing and Communication Systems. Japan:ISPACS, 2017:550-553.

[6] WANG H,CHEN Y,LIU F,et al. Wideband and compact quasi.Yagi antenna with bowtie-shaped drivers[J]. Electronics Letters, 2013,49(20):1262-1264.

[7] ULLAH M H, MAHADI W N, LATEF T A, et al. Dual band printed quasi-Yagi antenna for RFID and WLAN applications[J]. Microwave and Optical Technology Letters, 2015,57(11):2655-2657.

[8] 商锋,李晓娇 .一种宽带微带八木天线的设计 [J].太赫兹科学与电子信息学报, 2019,17(3):445-447,456. (SHANG Feng,LI Xiaojiao. Design of a broadband microstrip Yagi antenna[J]. Journal of Terahertz Science and Electronic Information Technology, 2019,17(3):445-447,456.)

[9] DEJEAN G R, TENTZERIS M M. A new high-gain microstrip Yagi array antenna with a high Front .to .Back(F/B) ratio for WLAN and millimeter-wave applications[J]. IEEE Transactions on Antennas and Propagation, 2007(55):298-304.

[10] DEJEAN G R,THAI T T,NIKOLAOU S,et al.Design and analysis of microstrip bi-Yagi and quad-Yagi antenna arrays for WLAN applications[J]. Antennas and Wireless Propagation Letters, 2007,6(11):244-248.

[11] 倪国旗,余白平,梁军 .一种改进型微带贴片八木天线的设计 [J].电讯技术, 2011(10):108-112. (NI Guoqi,YU Baiping,LIANG Jun,et al. Design of an improved microstrip patch Yagi antenna[J]. Telecommunications Technology, 2011(10):108-112.)

[12] LU H D,SI L M,LIU Y. Compact planar microstrip-fed quasi.Yagi antenna[J]. Electronics Letters, 2012,48(3):140-141.

[13] 李玄玄,刘贵亚,张宇,等 .S波段宽带高增益微带准八木天线阵列设计 [J].无线电通信技术, 2017(2):64-66. (LI Xuanxuan, LIU Guiya, ZHANG Yu, et al. Design of S-band wideband high gain microstrip quasi.Yagi antenna array[J]. Radiocommunication Technology, 2017(2):64-66.)

[14] AGUILA P,ZUFFANELLI S,ZAMORA G,et al. Planar Yagi-uda antenna array based on Split-Ring Resonators(SRRs)[J]. IEEE Antennas and Wireless Propagation Letters, 2017,16(1):1233-1236.

[15] SUN Y,WEN G,JIN H,et al. Gain enhancement for wide bandwidth endfire antenna with I-Shaped Resonator(ISR) structures[J]. Electronics Letters, 2013,49(12):736-737.

[16] KIM D,KIM C Y. Dual-band quasi.Yagi antenna with split ring resonator directors[J]. Electronics Letters, 2012,48(14):809-810.

[17] KHAN O M,ISLAM Z U,ISLAM Q U,et al. Multiband high-gain printed Yagi array using square spiral ring metamaterial structures for S-band applications[J]. IEEE Antennas & Wireless Propagation Letters, 2014(13):1100-1103.

[18] SUN Y,DU Z,DU J,et al. Enhanced gain and broadband of endfire antenna by using I-shaped resonator structures[J]. International Journal of RF and Microwave Computer-aided Engineering, 2018,28(7):1-6.

[19] CHEN Z, ZENG M, ANDRENKO A S, et al. A dual-band high-gain quasi-Yagi antenna with split-ring resonators for radio frequency energy harvesting[J]. Microwave and Optical Technology Letters, 2019,61(9):2174-2181.

[20] SUN Y,JIN H. Design of broadband endfire antenna with Split-Ring Resonator(SRR) structures[C]// IEEE International Conference on Computational Electromagnetics. Shanghai,China:IEEE, 2019:1-3.

[21] 尚茨 .超宽带(UWB)天线原理与设计[M].北京:人民邮电出版社, 2012. (SHANG Ci. Principle and design of Ultra-Wideband (UWB) antenna[M]. Beijing:Posts and Telecommunications Press, 2012.)

王友保, 郑大鹏, 张宥诚. 带有开口谐振环引向器的新型端射天线设计[J]. 太赫兹科学与电子信息学报, 2022, 20(7): 691. WANGYoubao, ZHENGDapeng, ZHANG Youcheng. A novel design of end-fire antenna with Split-Ring Resonants director[J]. Journal of terahertz science and electronic information technology, 2022, 20(7): 691.

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