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NPSO based optimal deign and synthesis of Concentric Circular Antenna Array with non-isotropic elements

机译:基于NPSO具有非各向同性元素的同心圆形天线阵列的最佳转义和合成

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This paper presents an optimal design and synthesis of three-ring Concentric Circular Antenna Arrays (CCAA) with non-isotropic elements with and without central element feeding. Novel Particle Swarm Optimization (NPSO) is adopted as an evolutionary optimization technique for the CCAA design and synthesis. It is shown that by proper selection of the fitness function which controls more than one parameter of the array pattern, and also by proper setting of weight factors in fitness function, one can achieve substantially improved results. For each optimal design, optimal current excitation weights and optimal radii are determined with an objective of maximum Sidelobe Level (SLL) reduction. The extensive simulation results show that the CCAA designs having central element feeding for non-isotropic elements yield to much more reduction in SLL as compared to that of the CCAA without central element feeding. Moreover, a particular CCAA with central element feeding containing 4, 6 and 8 number of elements in three successive rings yields to a grand minimum SLL of −49.21 dB. Conventional Particle Swarm Optimization (PSO) is adopted to compare the results obtained by using NPSO algorithm.
机译:本文介绍了三环同心圆形天线阵列(CCAA)的最佳设计和合成,其中非各向同性元素,没有中央元素喂养。采用新型粒子群优化(NPSO)作为CCAA设计和合成的进化优化技术。 It is shown that by proper selection of the fitness function which controls more than one parameter of the array pattern, and also by proper setting of weight factors in fitness function, one can achieve substantially improved results.对于每个最佳设计,通过最大的侧链电平(SLL)减小来确定最佳电流激励权重和最佳半径。广泛的仿真结果表明,与没有中央元件进料的CCAA相比,CCAA设计具有用于非各向同性元素的中央元素的饲喂,其产生更低的SLL。此外,特定的CCAA具有中央元素进料,其中三个连续环中的含有4,6和8个元素,产生-49.21dB的大量最小SLL。采用常规粒子群优化(PSO)进行比较通过使用NPSO算法获得的结果。

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