首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Pattern Synthesis of Planar Nonuniform Circular Antenna Arrays Using a Chaotic Adaptive Invasive Weed Optimization Algorithm
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Pattern Synthesis of Planar Nonuniform Circular Antenna Arrays Using a Chaotic Adaptive Invasive Weed Optimization Algorithm

机译:平面非均匀圆形天线阵列方向图合成的混沌自适应杂草优化算法

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摘要

A novel invasive weed optimization (IWO) variant called chaotic adaptive invasive weed optimization (CAIWO) is proposed and applied for the optimization of nonuniform circular antenna arrays. A chaotic search method has been combined into the modified IWO with adaptive dispersion, where the seeds produced by a weed are dispersed in the search space with standard deviation specified by the fitness value of the weed. To evaluate the performance of CAIWO, several representative benchmark functions are minimized using various optimization algorithms. Numerical results demonstrate that the proposed approach improves the performance of the algorithm significantly, in terms of both the convergence speed and exploration ability. Moreover, the scheme of CAIWO is employed to find out an optimal set of weights and antenna element separation to obtain a radiation pattern with maximum side-lobe level (SLL) reduction with different numbers of antenna element under two cases with different purposes. The design results obtained by CAIWO have comfortably outperformed the published results obtained by other state-of-the-art metaheuristics in a statistically meaningful way.
机译:提出了一种新颖的入侵杂草优化(IWO)变体,称为混沌自适应入侵杂草优化(CAIWO),并将其应用于非均匀圆形天线阵列的优化。混沌搜索方法已被结合到具有自适应分散的改进的IWO中,其中杂草产生的种子以标准偏差由杂草适应度值分散在搜索空间中。为了评估CAIWO的性能,使用各种优化算法将几个代表性基准功能最小化。数值结果表明,该方法从收敛速度和探索能力两方面都大大提高了算法的性能。此外,在不同目的的两种情况下,采用CAIWO方案找出一组最佳的权重和天线元件间隔,以获得具有最大旁瓣电平(SLL)减小的辐射方向图,该天线图案具有不同数量的天线元件。 CAIWO获得的设计结果以统计学上有意义的方式,已经远远胜过其他最新的元启发式方法获得的已发表结果。

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