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GSAWM for beamforming and directivity of linear antenna arrays

机译:用于波束成形和线性天线阵列的指向性的GSAWM

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In this paper, a new evolutionary optimization algorithm named gravitational search algorithm with wavelet mutation (GSAWM) is adopted for optimal design of hyper beam pattern of linear antenna arrays. Hyper beam is derived from sum and difference beam patterns associated with hyper beam exponent parameter for the array. In GSAWM, particles are considered as objects and their performances are measured by their masses. All these objects attract each other by gravity forces, and these forces produce global movements of all objects towards the objects with heavier masses. GSAWM guarantees the exploitation step of the algorithm and it is apparently free from premature convergence. Extensive simulation results justify superior optimization capability of GSAWM over the aforementioned optimization techniques. By optimization of current excitation weights and uniform inter-element spacing, GSAWM achieves optimized hyper beam with much greater reduction in side lobe level (SLL), improved directivity and much more improved first null beam width (FNBW), keeping the same value of hyper beam exponent. The whole simulation experiment has been performed for 10-, 14-, and 20-element linear antenna arrays.
机译:本文采用了一种具有小波突变(GSAWM)的新进化优化算法,用于线性天线阵列的超光束图案的最优设计。超光束源自与阵列的超光束指数参数相关联的总和和差波比。在GSAWM中,颗粒被认为是物体,并且它们的性能由其质量测量。所有这些物体通过重力力彼此吸引,这些力产生所有物体的全局运动,朝向具有较重质量的物体。 GSAWM保证了算法的开发步骤,它显然是没有过早的收敛性。广泛的仿真结果使GSAWM的优化优化能力正常合理地说明了上述优化技术。通过优化电流激励重量和均匀的元素间距,GSAWM实现了优化的超光束,侧瓣级(SLL)的减少更大,改善的方向性和更改善的第一空光束宽度(FNBW),保持相同的超级价值光束指数。整个仿真实验已经为10-,14-和20元元线性天线阵列进行。

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