Combination of fast Fourier transform and self-adaptive differential evolution algorithm for synthesis of phase-only reconfigurable rectangular array antenna

被引:0
作者
Anirban Chatterjee
G. K. Mahanti
机构
[1] Dr. B. C. Roy Engineering College,Department of Electronics and Communication Engineering
[2] National Institute of Technology,Department of Electronics and Communication Engineering
来源
annals of telecommunications - annales des télécommunications | 2014年 / 69卷
关键词
Differential evolution (DE) algorithm; Particle swarm optimization (PSO) algorithm; Self-adaptive differential evolution (SaDE) algorithm; Dynamic range ratio (DRR); Fast Fourier transform (FFT); Rectangular planar array; Peak sidelobe level (peak SLL);
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中图分类号
学科分类号
摘要
Reconfigurable antenna arrays are often capable of radiating multiple patterns by altering the excitation phases of the array elements. In this paper, an efficient method based on FFT is presented for generating dual-radiation pattern from a single rectangular planar array by modifying the excitation phases of the array elements while sharing common amplitudes. The common amplitudes shared by both the patterns and the phases which play the role of turning between the two patterns when updated over zero phase among the elements are computed using Self-adaptive Differential Evolution (SaDE) algorithm. Two different beam-pairs of pencil/pencil and pencil/flat-top are generated from the proposed array while maintaining precise design specifications. The proposed method greatly reduces the computational time as compared with the conventional method for calculating beam patterns. The dynamic range ratio of the excitation amplitudes are kept below a threshold level to reduce the design complexity of the attenuators at the feed network level and to minimize the effect of mutual coupling among the array elements. To illustrate the effectiveness of SaDE, the fitness functions associated with the two beam-pairs are minimized individually using differential evolution (DE) algorithm and particle swarm optimization (PSO) algorithm. Results clearly show the superiority of SaDE over DE and PSO to handle the proposed problem.
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页码:515 / 527
页数:12
相关论文
共 92 条
  • [1] Bucci OM(1991)Reconfigurable arrays by phase-only control IEEE Trans Antennas Propag 39 919-925
  • [2] Mazzarella G(2000)Design of phase-differentiated multiple-pattern antenna arrays Microw Opt Technol Lett 26 52-53
  • [3] Panariello G(2000)Multiple-pattern linear antenna arrays with single prefixed amplitude distributions: modified Woodward–Lawson synthesis Electron Lett 36 1345-1346
  • [4] Diaz X(2004)Two-pattern linear array antenna: synthesis and analysis of tolerance IEE Proc Microw Antennas Propag 151 127-130
  • [5] Rodriguez JA(2002)Synthesis of multiple-pattern planar antenna arrays with single prefixed or jointly optimised amplitude distributions Microw Opt Technol Lett 32 74-78
  • [6] Ares F(2003)Particle swarm optimization for reconfigurable phase-differentiated array design Microw Opt Technol Lett 38 168-175
  • [7] Moreno E(2006)Design of phase-differentiated reconfigurable array antennas with minimum dynamic range ratio IEEE Antennas Wirel Propag Lett 5 262-264
  • [8] Durr M(2007)Design of fully digital controlled reconfigurable array antennas with fixed dynamic range ratio J Electromagn Waves Appl MIT USA 21 97-106
  • [9] Trastoy A(2008)Dual beam synthesis using element position perturbations and the G3-GA algorithm Prog Electromagn Res 87 43-61
  • [10] Ares F(2011)Design of fully digital controlled reconfigurable dual-beam concentric ring array antenna using gravitational search algorithm Progress Electromagn Res C 18 59-72