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Design of circular antenna arrays for the reduction of side lobe and first null beamwidth using BFO

机译:使用BFO减少旁瓣和第一个零波束宽度的圆形天线阵列设计

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A design problem of non-uniform circular antenna arrays for maximum reduction of both the side lobe level (SLL) and first null beamwidth (FNBW) is dealt with. This problem is modeled as a simple optimization problem. The method of Bacteria foraging Optimization (BFO) is used to determine an optimal set of current excitation weights and antenna inter-element spacing that provide radiation pattern with maximum SLL reduction and much improvement on FNBW as well. Circular array antenna laying on x-y plane is assumed. BFO is applied on circular arrays of 8-, 10-, and 12- elements. Various simulation results are presented and hence performances of side lobe and FNBW are analyzed. Experimental results show considerable reductions of both the SLL and FNBW with respect to those of the uniform case and some standard algorithms GA [12], PSO [14] and SA [11] applied to the same problem.
机译:解决了用于最大程度地减小旁瓣电平(SLL)和第一空波束宽度(FNBW)的非均匀圆形天线阵列的设计问题。该问题被建模为一个简单的优化问题。细菌觅食优化方法(BFO)用于确定当前激励权重和天线元素间距的最佳集合,以提供最大SLL降低和FNBW改善的辐射图。假定放置在x-y平面上的圆形阵列天线。 BFO应用于8、10和12个元素的圆形阵列。给出了各种仿真结果,因此分析了旁瓣和FNBW的性能。实验结果表明,相对于统一情况而言,SLL和FNBW均显着降低,并且一些标准算法GA [12],PSO [14]和SA [11]适用于同一问题。

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