Design of linear and circular antenna arrays using biogeography based optimization

A. Sharaqa, N. Dib
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引用次数: 21

Abstract

The design of linear and circular antenna arrays is one of the important electromagnetic optimization problems. In this paper, the problem of designing these arrays for specific radiation properties is dealt with. The biogeography based optimization (BBO) method, which represents a new evolutionary algorithm, is used in the optimization process. BBO is used to minimize the maximum side lobe level (SLL) and null control for isotropic linear antenna arrays by optimizing different array parameters (position, amplitude, and phase). Similarly, for non-uniform circular antenna arrays (CAA), BBO is used to determine an optimum set of weights and positions that provide a radiation pattern with maximum SLL reduction with the constraint of a fixed major lobe beam width. The results obtained show the effectiveness of BBO compared to other optimization methods.
基于生物地理学优化的线性和圆形天线阵列设计
线性和圆形天线阵列的设计是重要的电磁优化问题之一。本文讨论了针对特定辐射特性设计这些阵列的问题。基于生物地理的优化方法(BBO)是一种新的进化算法。BBO通过优化不同的阵列参数(位置、幅度和相位)来最小化各向同性线性天线阵列的最大旁瓣电平(SLL)和零控制。类似地,对于非均匀圆形天线阵列(CAA), BBO用于确定一组最佳权值和位置,这些权值和位置在固定主瓣波束宽度的约束下提供最大SLL减小的辐射方向图。结果表明,BBO优化方法与其他优化方法相比是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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