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首页> 外文期刊>Chinese Journal of Systems Engineering and Electronics >Low side lobe pattern synthesis using projection method with genetic algorithm for truncated cone conformal phased arrays
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Low side lobe pattern synthesis using projection method with genetic algorithm for truncated cone conformal phased arrays

机译:遗传算法投影法合成圆锥形共形相控阵低旁瓣模式

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摘要

A hybrid method for synthesizing antenna's three dimensional (3D) pattern is proposed to obtain the low sidelobe feature of truncated cone conformal phased arrays. In this method, the elements of truncated cone conformal phased arrays are projected to the tangent plane in one generatrix of the truncated cone. Then two dimensional (2D) Chebyshev amplitude distribution optimization is respectively used in two mutual vertical directions of the tangent plane. According to the location of the elements, the excitation current amplitude distribution of each element on the conformal structure is derived reversely, then the excitation current amplitude is further optimized by using the genetic algorithm (GA). A truncated cone problem with 8??8 elements on it, and a 3D pattern desired side lobe level (SLL) up to 35 dB, is studied. By using the hybrid method, the optimal goal is accomplished with acceptable CPU time, which indicates that this hybrid method for the low sidelobe synthesis is feasible.
机译:为了获得截头圆锥形保形相控阵的低旁瓣特征,提出了一种综合天线的三维(3D)方向图的混合方法。在这种方法中,将截锥圆锥形保形相控阵的元素投影到截锥圆锥形的一个母线上的切平面。然后分别在切平面的两个相互垂直的方向上使用二维(2D)Chebyshev振幅分布优化。根据元素的位置,反求出共形结构上每个元素的励磁电流幅度分布,然后利用遗传算法(GA)进一步优化励磁电流幅度。研究了一个截头圆锥问题,上面有8个8个元素,以及3D模式所需的旁瓣电平(SLL)高达35 dB。通过使用混合方法,可以在可接受的CPU时间下达到最佳目标,这表明该混合方法用于低旁瓣合成是可行的。

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