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NSBBO for gain-impedance optimization of Yagi-Uda antenna design

机译:NSBBO用于优化Yagi-Uda天线设计的增益阻抗

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Biogeography-Based Optimization (BBO) is one of the recently developed population based algorithms which has shown impressive performance over other Evolutionary Algorithms (EAs). BBO is based on the study of geographical distribution of biological organisms over space and time. Yagi-Uda antenna design is most widely used antenna at VHF and UHF frequencies due to high gain, directivity and ease of construction. However, designing a Yagi-Uda antenna that involves determination of wire-lengths and spacings is highly complex and non-linear problem. If gain is intended to increase then imaginary part in impedance becomes significant. In this paper Non-dominated Sorting BBO (NSBBO) is proposed and investigated for Multi-objective optimization of six-element Yagi-Uda antenna designs to optimize two objectives, viz., gain and impedance, simultaneously. The best results and BBO flow are presented in the ending sections of the paper.
机译:基于生物地理的优化(BBO)是最近开发的基于种群的算法之一,与其他进化算法(EA)相比,其表现出令人印象深刻的性能。 BBO基于对生物在空间和时间上的地理分布的研究。 Yagi-Uda天线设计因其高增益,方向性和易于构造而成为VHF和UHF频率上使用最广泛的天线。但是,设计涉及确定导线长度和间距的八木宇田天线是非常复杂和非线性的问题。如果要增加增益,那么阻抗中的虚部将变得很重要。在本文中,提出并研究了非支配排序BBO(NSBBO),用于六元素八木-宇田天线设计的多目标优化,以同时优化两个目标,即增益和阻抗。最佳结果和BBO流程在本文的结尾部分给出。

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