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首页> 外文期刊>Electromagnetics >Hybrid Evolutionary Algorithm Genetical Swarm Optimization for 1D and 2D Annular Ring Unequally Spaced Antennas Arrays Synthesis
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Hybrid Evolutionary Algorithm Genetical Swarm Optimization for 1D and 2D Annular Ring Unequally Spaced Antennas Arrays Synthesis

机译:一维和二维环形环不等距天线阵列综合的混合进化算法遗传群优化

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摘要

In this article, an innovative technique to design 1D and 2D annular ring unequally microstrip antenna arrays for the two modes TM11 and TM12 is introduced. The structure analysis is based on the modified cavity model, which allows to take into account the fringing fields effects along the ring-curved edges by employing dynamic permittivity. Design of linear and planar antenna arrays consider the optimization of the complex excitations values of the feeding network and the element locations first and a predefined magnitude's Gaussian and uniform feed arrays of two modes second by using the genetical swarm optimizer method. The design of aperiodic linear antenna arrays is modeled as a single-objective problem, and the optimization of 2D aperiodic antenna arrays for both E and H planes and for both modes are also expanded to multi-objective cases. In terms of beam steering and low side-lobes level, the results presented in this article show interesting characteristics in the array factor response. Examples are given to illustrate the achievable performance.
机译:在本文中,介绍了一种创新技术,用于设计两种模式TM11和TM12的1D和2D环形非均等微带天线阵列。结构分析基于修改后的空腔模型,该模型允许通过使用动态介电常数考虑沿环形弯曲边缘的边缘场效应。线性和平面天线阵列的设计首先考虑了遗传网络优化器方法,优化了馈电网络的复杂激励值和元素位置,然后优化了两个模式的预定义幅度的高斯和均匀馈电阵列。非周期性线性天线阵列的设计被建模为一个单目标问题,并且针对E和H平面以及两种模式的2D非周期性天线阵列的优化也扩展到多目标情况。在波束控制和低旁瓣电平方面,本文介绍的结果在阵列因子响应中显示出有趣的特性。给出了一些示例来说明可实现的性能。

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