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Optimization of thinned aperiodic linear phased arrays using genetic algorithms to reduce grating lobes during scanning

机译:使用遗传算法优化减薄的非周期性线性相控阵以减少扫描期间的光栅波瓣

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The scan volume of a thinned periodic linear phased array is proportional to the spacing between array elements. As the spacing between elements increases beyond a half wavelength, the scan range of the array will be significantly reduced due to the appearance of grating lobes. This paper investigates a method of creating thinned aperiodic linear phased arrays through the application of genetic algorithms that will suppress the grating lobes with increased steering angles. In addition, the genetic algorithm will place restrictions on the driving-point impedance of each element so that they are well behaved during scanning. A genetic algorithm approach is also introduced for the purpose of evolving an optimal set of matching networks. Finally, an efficient technique for evaluating the directivity of an aperiodic array of half-wave dipoles is developed for use in conjunction with genetic algorithms.
机译:稀疏的周期性线性相控阵列的扫描量与阵列元素之间的间距成比例。随着元件之间的间隔增加超过一半波长,由于光栅波瓣的出现,阵列的扫描范围将大大减小。本文研究了一种通过应用遗传算法来创建变薄的非周期性线性相控阵的方法,该算法将抑制随着转向角增大而产生的光栅波瓣。另外,遗传算法将对每个元素的驱动点阻抗施加限制,以使它们在扫描期间表现良好。还引入了遗传算法方法,以发展一组最佳的匹配网络。最后,开发了一种有效的技术来评估半波偶极子非周期性阵列的方向性,以与遗传算法结合使用。

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