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首页> 外文期刊>Journal of King Saud University: Physics and Mathematics >QPSO for failure correction of linear array of mutually coupled parallel dipole antennas with desired side lobe level and return loss
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QPSO for failure correction of linear array of mutually coupled parallel dipole antennas with desired side lobe level and return loss

机译:QPSO用于校正具有所需旁瓣电平和回波损耗的相互耦合的平行偶极子天线的线性阵列的故障

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摘要

A method based on quantum particle swarm optimization is proposed for correcting radiation pattern of a uniformly spaced linear array of parallel half-wavelength vertical very thin dipole antennas when more than one element of the array is completely defective. The generated pattern is broadside in the horizontal plane. Mutual coupling between the half-wavelength parallel dipole antennas has been taken care of by induced EMF method considering the current distribution on each dipole to be sinusoidal. Side lobe level and minimum return loss of the corrected pattern with defective elements are also calculated and an attempt is made that these parameters be equal to their respective specified values. This is usually done by changing excitation current amplitude of the non-defective elements without replacing the faulty elements. The element pattern of half-wavelength dipole antenna has been assumed omni-directional in the horizontal plane. Two examples are presented to show the effectiveness of the proposed approach.
机译:提出了一种基于量子粒子群优化的方法,当阵列中的一个以上元件完全损坏时,用于校正平行半波长垂直极细偶极子天线的均匀间隔线性阵列的辐射方向图。生成的图案在水平面内为宽边。考虑到每个偶极子上的电流分布为正弦形,通过感应电动势方法已经解决了半波长平行偶极子天线之间的相互耦合问题。还计算具有缺陷元素的校正图案的旁瓣电平和最小回波损耗,并尝试使这些参数等于其各自的指定值。这通常是通过改变无缺陷元件的励磁电流幅度来完成的,而不用更换有故障的元件。半波长偶极天线的元件方向图被假定为在水平面上是全向的。给出两个例子,以说明所提出方法的有效性。

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