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变形螺旋天线的自动设计 被引量:7

Automated design of modified helical antennas
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摘要  利用优化算法进行天线的自动设计是现代天线研究的一个重要趋势。采用NEC(NumericalElectromagneticsCode)天线数值计算程序和遗传算法,结合并行计算技术,实现了对螺旋天线的自动设计。在轴向模辐射,螺旋轴长80cm内和频率为600MHz的条件下,设计了增益高达12.68dB的均匀螺旋天线,比传统设计方法高3.28dB;在400~800MHz的频带内,对变形螺旋天线之一的锥削螺旋天线做了高增益设计,平均增益达12.28dB;对锥削螺旋 圆锥喇叭天线进行了优化设计,得到了比普通螺旋天线更佳的辐射性能。这些设计结果都是传统天线设计方法难以完成的,表明自动设计具有比传统天线设计方法更大的灵活性和更强的设计能力。 Automated antenna design has already become the latest trend of antenna design. An approach, which is based on the genetic algorithm (GA) and the NEC2 (numerical electromagnetics code, version 2) in conjunction with the parallel computation technique, is explored to design and optimize helical antennas. Three kinds of antennas are optimized by the approach: a uniform helical antenna with a gain of 12.68 dB, which is 3.38 dB higher than that created by traditional design methods; a tapered helical antenna with average gain 12.28 dB in frequency band 400-800 MHz; and a tapered helix-conical horn antenna. Results show the approach is more efficient than traditional design methods and can solve different antenna design problems of widely varying complexity, including those too difficult to attempt with traditional design methods.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2004年第5期636-640,共5页 High Power Laser and Particle Beams
基金 国家863计划项目资助课题 杰出青年基金资助课题(60125102)
关键词 螺旋天线 并行遗传算法 NEC 自动设计 Antennas Genetic algorithms Parallel algorithms Structural design
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参考文献7

  • 1King H E, Wong J L. Characteristics of 1 to 8 wavelength uniform helical antennas[J]. IEEE Trans Ant Propag, 1980, 28: 291-296.
  • 2Nakano H, Junji Y, Mimaki H. Backfire radiation from a monofilar helix with a small ground plane[J]. IEEE Trans Ant Propag,1988, 36(10): 1359-1364.
  • 3Emerson D T. Antenna compendium volume 4 [M]. USA: ARRL, 1995.
  • 4Richie J E,Gangl H R III. EFIE-MFIE hybrid simulation using NEC:VSWR for the WISP experiment[J]. IEEE Trans on Electromag Compat, 1995, 37(2): 293-296.
  • 5Peng J,Balanis C A,Barber G C. NEC and ESP codes: guidelines, limitations, and EMC applications[J]. IEEE Trans on Electromag Compat,1993, 35(2): 125-133.
  • 6Weile D S, Michielssen E. Genetic algorithm optimization applied to electromagnetics: a review[J]. IEEE Trans Ant Propag, 1997, 45(3): 343-353.
  • 7陈星,黄卡玛,赵翔.遗传算法在二维电磁成像病态方程求解中的应用研究[J].强激光与粒子束,2002,14(4):587-590. 被引量:7

二级参考文献2

共引文献6

同被引文献24

  • 1陈星,黄卡玛,赵翔.NEC和非堵塞式主从并行遗传算法应用于天线自动设计的研究[J].电子学报,2004,32(8):1389-1392. 被引量:13
  • 2纪奕才,刘其中,尹应增,葛德彪.混合遗传算法优化设计宽带加载螺旋天线[J].电波科学学报,2005,20(2):260-264. 被引量:3
  • 3周光镒,朱红刚.高功率微波脉冲大气传输的一些规律[J].强激光与粒子束,1996,8(4):485-490. 被引量:17
  • 4ZHOU Guangping. A nonuniform pitch dual band helix antenna [ C ]// Antennas and Propagation Society International Symposium, IEEE, 2000: 274- 277.
  • 5CHEN C H, YUNG E K N. , Hu Binjie, XIE Shengli. Axial mode helix antenna with exponential spacing [J]. Microwave and Optical Technology Letters, 2007, 49 (7) : 1525 - 1530.
  • 6KILLEN W D. Variable pitch angle, axial mode helical antenna: US, 5892480 [P/OL]. 1999. http://www. freepatentsonline, com/5892480, html.
  • 7NAKANO H, SAMADA Y, YAMAUCHI J. Axial mode helical antennas [J]. IEEE Transactions on Antennas and Propagation, 1986, 34(9) : 1143 - 1148.
  • 8WU Zehai, EDWARD K. N. Yung. Axial mode elliptical cross-section helical antenna [J] Microwave and Optical Technology Letters, 2006, 48 (10) : 2080 - 2083.
  • 9WU Zehai, CHE W Q, FU B, LAU P Y, YUNG E K N. Axial mode elliptical helical antenna with parasitic wire for CP bandwidth enhancement [ J ] Microwaves, Antennas & Propagation, 2007, 1 (4) : 943 -948.
  • 10Wong J, Lob S. Radiation field of an elliptical helical antenna[J].IEEE Trans Antennas Propag, 1959, 7(1) :46-52.

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