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基于多分PSO算法的阵列天线方向图综合
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TN820.1

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国家自然科学基金资助项目(61379104)


Array Antennas Beam Pattern Synthesis Based on Multi-Divided Particle Swarm Optimization
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    摘要:

    针对如何确定PSO算法粒子分裂数目、如何评价粒子寻优能力与算法寻优能力这3方面的问题,对多分PSO算法在不同粒子分裂数目时,线阵低副瓣方向图、带零陷低副瓣方向图的综合性能通过定义粒子停滞率、寻优比进行了研究,分别从所综合的方向图性能和粒子寻优能力进行了详细分析。仿真结果表明:分裂次数越多,寻优比越大,算法收敛速度越快,但粒子停滞率基本不变,对于较为复杂的方向图综合,随着分裂次数的增多,寻优比增大的幅度变小,且仿真所需的时间增加。仿真分析表明所定义的2个参数能够有效地反映多分法的寻优能力及多分法中粒子的寻优能力,从微观角度对多分PSO算法的寻优能力做出较为可靠的评价。

    Abstract:

    Multi-divided particle swarm optimization is putted forward based on dichotomy particle swarm optimization. Aims at how to confirm the number of divided particle, how to evaluate the ability of particle optimization and the ability of algorithm optimization, linear array synthesized pattern’s performance are studied by defined the rate of particle stagnancy and the rate of optimization, which involves low side-lobe beam pattern synthesis and low side-lobe beam pattern with nulling synthesis. The results of simulation indicate that the more times of particle divided the higher of optimization rate, and the constringency speed of PSO is fast, but the rate of particle stagnancy is almost same. However, more times of particle is not always good when synthesizing complex beam pattern. These characters show that the two indexes which can availably reflect the ability of particle optimization and algorithm optimization, can reliably estimate optimization ability of multi-divided particle swarm optimization from microcosmic point.

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郭华,杨永建.基于多分PSO算法的阵列天线方向图综合[J].空军工程大学学报,2014,(2):66-70

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  • 在线发布日期: 2015-11-17
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