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Design of concentric circular and concentric hexagonal antenna array using hybrid EPSO/DE algorithm

机译:基于混合EPSO / DE算法的同心圆和同心六角形天线阵设计。

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In this paper, the novel hybrid enhanced particle swarm optimization and differential evolution (EPSO/DE) optimization technique [1–2] is used in designing different configurations of concentric circular arrays (CCAA) and concentric hexagonal arrays (CHAA). Many advantages were achieved by the rearrangement of the circular arrays (CA) and hexagonal arrays (HA) elements into CCAA and CHAA multi-ring geometries. Different configurations with two-rings, three-rings and four-rings are designed with the same number of elements and the same main beamwidth of the initial circular and helical geometries. The objective of this paper is to design optimum multi-ring antenna arrays that achieve minimum sidelobe level (SLL), high directivity and reduced mutual coupling in compare to traditional circular and helical arrays. Hybrid EPSO/DE algorithm is applied to optimize the complex weights (amplitude and phase) of the elements current. The objective is to minimize the SLL of the concentric configuration arrays while achieving the highest possible directivity and minimum mutual coupling.
机译:在本文中,新颖的混合增强粒子群优化和差分进化(EPSO / DE)优化技术[1-2]用于设计同心圆阵列(CCAA)和同心六边形阵列(CHAA)的不同配置。通过将圆形阵列(CA)和六角形阵列(HA)元素重新排列为CCAA和CHAA多环几何形状,可以实现许多优点。具有两个环,三个环和四个环的不同配置的设计具有相同数量的元素以及相同的初始圆形和螺旋形几何形状的主光束宽度。本文的目的是设计最佳的多环天线阵列,与传统的圆形和螺旋形阵列相比,该阵列可实现最小的旁瓣电平(SLL),高方向性并减少相互耦合。应用EPSO / DE混合算法来优化电流元素的复数权重(幅度和相位)。目的是最小化同心配置阵列的SLL,同时实现最高可能的方向性和最小的互耦合。

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