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Automated design of a three-dimensional fishbone antenna using parallel genetic algorithm and NEC

机译:基于并行遗传算法和NEC的三维鱼骨天线自动化设计

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摘要

A new antenna configuration, named the three-dimensional fishbone antenna (3DFA), as an improvement of the conventional fishbone antenna, is presented in this letter. It consists of dipoles that may be of nonuniform lengths with unequal spacing and are allowed to tilt in haphazard directions. To achieve a high endfire gain and good impedance match, the structural parameters of the 3DFA are optimized in an automated design, making use of the genetic algorithm (GA) in conjunction with numerical electromagnetic codes (NEC) and cluster parallel computation. The design results are presented and discussed. A prototype of such designed 3DFA has been fabricated and tested. The measured radiation pattern and the return loss of the antenna are compared with the computational results, and a good agreement is observed. Another such designed 3DFA has achieved an endfire gain up to 16.72 dBi, which surpass the maximum gain of a conventional Yagi-Uda antenna with the same number of elements by 87%.
机译:这封信介绍了一种新的天线配置,称为三维鱼骨天线(3DFA),它是对传统鱼骨天线的改进。它由偶极子组成,这些偶极子的长度可能不均匀,间距不相等,并且可以沿偶然的方向倾斜。为了获得较高的端射增益和良好的阻抗匹配,通过遗传算法(GA)结合数字电磁代码(NEC)和群集并行计算,在自动化设计中对3DFA的结构参数进行了优化。介绍并讨论了设计结果。如此设计的3DFA的原型已被制造和测试。将测得的辐射方向图和天线的回波损耗与计算结果进行了比较,观察到了很好的一致性。另一个这样设计的3DFA达到了高达16.72 dBi的端射增益,比相同元件数的传统八木宇田天线的最大增益高出87%。

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