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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Pareto genetic algorithm based optimization of log-periodic monopole arrays mounted on realistic platforms
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Pareto genetic algorithm based optimization of log-periodic monopole arrays mounted on realistic platforms

机译:基于帕累托遗传算法的现实平台上对数周期单极阵列的优化

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摘要

A three-objective Pareto genetic algorithm is applied to the design of practical impedance-modulated feeds for log-periodic monopole arrays (LPMAs) mounted on arbitrary structures. Traditional design techniques do not permit the synthesis of feed structures for arrays on complex grounding structures. The multimodality of the search space of the feed-network design parameters precludes the use of standard gradient-search methods. The use of Pareto genetic algorithms allows for the study of tradeoffs between competing performance goals, and permits the generation of a database of feed designs that represent optimal performance tradeoffs from which one can select a posteriori. Numerical results are presented for the design of an LPMA mounted on a realistic wing. [References: 24]
机译:将三目标帕累托遗传算法应用于安装在任意结构上的对数周期单极阵列(LPMA)的实际阻抗调制馈源的设计。传统的设计技术不允许在复杂的接地结构上合成用于阵列的馈电结构。馈源网络设计参数的搜索空间的多模态无法使用标准的梯度搜索方法。帕累托遗传算法的使用允许研究竞争性能目标之间的折衷,并允许生成代表最佳性能折衷的饲料设计数据库,从中可以选择后代。数值结果给出了安装在实际机翼上的LPMA设计的结果。 [参考:24]

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