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基于非均匀传输微带线设计Wilkinson功分器 被引量:2

Design of a Wilkinson Power Divider Based on the Nonuniform Transmission Microstrip Line
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摘要 在微带线基本理论的基础上,采用非均匀传输微带线研究设计了新型Wilkinson功分器有。运用阻抗匹配、奇偶模分析的方法,对基于非均匀传输微带线的Wilkinson功分器进行理论分析,并通过ADS2008(Advanced Design System 2008)软件的设计、仿真和优化得到了相关数据参数,设计制作了一款3.1-10.6 GHz范围内的非均匀传输微带线Wilkinson功分器,从而成功地实现了小型化、低功耗Wilkinson功分器。 On the basis of the fundamental theories of the microstrip line, this paper designs a new Wilkinson power divider using the nonuniform transmission microstrip line. The divider is theoretically analyzed by impedance matching and odd and even model analysis. Related data parameters are obtained through the design, simulation and optimization of ADS2008 ( Advanced Design System 2008 ), and a Wilkinson power divider based on the nonuniform transmission mierostrip line is designed within the range of 3.1 - 10. 6 GHz. Thus a miniaturized Wilkinson power divider with low power dissipation is realized.
出处 《电子科技》 2015年第5期71-73,共3页 Electronic Science and Technology
关键词 非均匀传输微带线 小型化 功分器 ADVANCED Design SYSTEM 2008 non-uniform transmission microstrip line miniaturization power divider advanced design system 2OO8
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参考文献8

  • 1张毅,陈明,张晨露,梁丽君.基于粒子群算法的3频Wilkinson功分器优化设计[J].微波学报,2013,29(2):82-86. 被引量:3
  • 2Shamaileh K,Qaroot A,Dib N,et al.Design and analysis of multifrequency Wilkinson power dividers using non-uniform transmission lines[J].International Journal RF and Microwave Computer-Aided Engineering,2011,1(21):526-533.
  • 3Shamaileh K,Dib N I.Design of compact dual-frequency Wilkinson power divider using non-uniform transmission lines[J].Progress In Electromagnetics Research C,2011(19):37-46.
  • 4Hosseini F,Hosseini M K A,Yazdani M.To compactring branch-line coupler using non-uniform transmission line[J].Microwave and Optical Technology Letters,2009,51(11):2679-2682.
  • 5Khalaj-Amirhosseini M.Analysis of coupled nonuniform transmission lines using Taylor's series expansion[J].IEEE Transactions on Electromagnetic Compatibility,2006,48(3):536-544.
  • 6Khair Shamaileh,Mohammad Almalkawi,Vijay Devabhakeuni.Non-uniform transmission line ultra-wideband wilkinson power divider[J].Progress in Electromagnetics Research C,2013,44(3):1-11.
  • 7Khalaj-Amirhosseini M.Analysis of coupled nonuniform transmission lines using fourier series expansion[J].International Journal of RF and Microwave Computer-Aided Engineering,2007,17(3):345-352.
  • 8Khalaj-Amirhosseini M.Analysis of nonuniform transmission lines using Taylor's series expansion[J].International Journal of RF and Microwave Computer-Aided Engineering,2006,16(2):536-544.

二级参考文献10

  • 1黄友火,刘其中,魏文博,纪奕才.天线宽带匹配网络的粒子群优化设计[J].微波学报,2007,23(5):11-13. 被引量:8
  • 2Srisathit S, Chongcheawchamnan M, Worapishet A. de- sign and realization of a dual-band 3-dB power divider based on a two-section transmission-line topology[ J]. E- lectron Lett 2003 (39) : 723-724.
  • 3Wu L, Yilimaz H, Bitzer T, et al. A duM-:equency Wilkinson power divider: for a frequency and its first har- monic [ J ]. IEEE Microwave Wireless Compon Lett,2005 (15) :107-109.
  • 4Wu L, Sun Z, Yilmaz H, et al. A dualfrequency Wilkin- son power divider [ J ]. IEEE Trans on Microw Theou Tech, 2006 (45) :278-284.
  • 5Chongcheawchamnan M, Partisang S, Krairiksh M, et al. Tri-band Wilkinson power divider using a three-sectiontransmission-line transformer[ J ]. IEEE Microwave Wire- less Comport Lett, 2006 (16) : 452-454.
  • 6Chongcheawchamnan M, Patisang S, Srisathit S, et al. Analysis and design of a three-section transmission-line transformer [ J ]. IEEE Trans on Microw Theory Tech, 2005 (53) :2458-2462.
  • 7Chow Y L, Wan K L. A transformer of one-third wave- length in two sections-for a frequency and its first harmon- ic[J1. IEEE Microw Wireless Compib Lett, 2002 (12) : 22-23.
  • 8Robinson J, Rahmat-Samii Y. Particle swarm optimiza- tion in eleetromagnetics [ J ]. IEEE Trans on Antennas Propag 2004, (52) : 397-407.
  • 9Kennedy J, Eberhart R C. Particleswarm optimization [ A ]. Proc of IEEE Int Conf Neural Networks [ C ], Perth Australia, 1995.1942-1948.
  • 10Monzon C, A small dual-frequency transformer in two sections [ J ]. IEEE Trans on Microw Theory Tech, 2003, 51 (4) :1157-1161.

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