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Synthesis of cosecant squared pattern in linear antenna arrays using differential evolution

机译:利用差分演化法合成线性天线阵列中的余割平方图

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In this paper, a cosecant squared shaped beam pattern is synthesized from a uniformly spaced but nonuniformly excited linear antenna array where the uniform spacing of the array elements is considered as half of the desired signal wavelength. The shaped beam pattern is synthesized for the angular beam width of 32° by reducing the side lobe level (SLL) to −20.06 dB and almost without any ripple in the shaped region. To get the desired pattern, excitation coefficients and the static phase shift of the array elements are taken as the optimizing parameters and the differential evolution (DE) algorithm is used as the optimizing algorithm. It is further observed that the desired array pattern is remained unaltered for a band of frequency on either side of the operating frequency.
机译:在本文中,从均匀间隔但非均匀激发的线性天线阵列合成了一个正割的方型波束方向图,其中阵列元件的均匀间隔被视为所需信号波长的一半。通过将旁瓣电平(SLL)降低至-20.06 dB,并且在成形区域几乎没有任何波动,可以为32°的角波束宽度合成成形的波束方向图。为了获得理想的图形,将激励系数和阵列元件的静态相移作为优化参数,并将差分演化算法作为优化算法。进一步观察到,对于工作频率的任一侧上的频带,所需的阵列图案保持不变。

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