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Linear Array Geometry Synthesis with Minimum Side Lobe Level and Null Control Using Dynamic Multi-Swarm Particle Swarm Optimizer with Local Search

机译:使用局部搜索的动态多群粒子群优化器以最小旁瓣电平和零位控制的线性阵列几何合成

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Linear antenna array design is one of the most important electromagnetic optimization problems of current interest. This paper describes the synthesis method of linear array geometry with minimum side lobe level and null control by the Dynamic Multi-Swarm Particle Swarm Optimizer with Local Search (DMSPSO) which optimizes the spacing between the elements of the linear array to produce a radiation pattern with minimum side lobe level and null placement control. The results of the DMSPSO algorithm have been shown to meet or beat the results obtained using other state-of-the-art metaheuristics like the Genetic Algorithm (GA),General Particle Swarm Optimization (PSO), Memetic Algorithms (MA), and Tabu Search (TS) in a statistically meaningful way. Three design examples are presented that illustrate the use of the DMSPSO algorithm, and the optimization goal in each example is easily achieved.
机译:线性天线阵列设计是当前关注的最重要的电磁优化问题之一。本文介绍了一种具有最小旁瓣电平和零位控制的线性阵列几何形状的合成方法,该方法通过具有局部搜索的动态多群粒子群优化器(DMSPSO)来优化线性阵列元素之间的间距以产生具有最小旁瓣电平和空置控制。事实证明,DMSPSO算法的结果达到或超过了使用其他最新的元启发式方法(如遗传算法(GA),通用粒子群优化(PSO),模因算法(MA)和禁忌)获得的结果以统计上有意义的方式进行搜索(TS)。给出了三个设计示例,这些示例说明了DMSPSO算法的使用,并且每个示例中的优化目标都可以轻松实现。

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