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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Fast Low-Sidelobe Synthesis for Large Planar Array Antennas Utilizing Successive Fast Fourier Transforms of the Array Factor
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Fast Low-Sidelobe Synthesis for Large Planar Array Antennas Utilizing Successive Fast Fourier Transforms of the Array Factor

机译:利用阵列因子的连续快速傅立叶变换对大型平面阵列天线进行快速低Sidelobe合成

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摘要

A new and very fast low-sidelobe pattern synthesis method for planar array antennas with periodic element spacing is described. The basic idea of the method is that since the array factor is related to the element excitations through an inverse Fourier transform, the element excitations can be derived from the array factor through a direct Fourier transform. Starting with an initial set of suitable element excitations the array factor is calculated. After matching the array factor to the prescribed pattern, an updated set of excitations is obtained through a direct Fourier transform performed on the matched array factor. From this updated set, only the samples associated with the aperture are retained, where after a new array factor is calculated. The whole process is repeated until the updated array factor does not violate any longer the pattern requirements. The proposed synthesis method provides significant improvements in terms of performance, computational speed, flexibility, and ease of implementation in software to the methods described in reviewed literature. A number of representative examples are presented to demonstrate the various unique capabilities of the method. The results include sum and difference patterns for circular and elliptical aperture shapes featuring uniform ultra low sidelobes
机译:描述了一种新的非常快的具有周期性元素间隔的平面阵列天线的低旁瓣方向图合成方法。该方法的基本思想是,由于阵列因子与通过反傅立叶变换的元素激发有关,因此可以通过直接傅立叶变换从阵列因子中导出元素激发。从合适的元素激励的初始集合开始,计算阵列因子。在将阵列因子匹配到规定的模式之后,通过对匹配的阵列因子执行直接傅立叶变换来获得一组更新的激励。从这个更新的集合中,仅保留与孔径相关的样本,然后在其中计算新的阵列因子。重复整个过程,直到更新的数组因子不再违反模式要求为止。所提出的综合方法在性能,计算速度,灵活性以及在软件中易于实施方面,均优于文献综述中所述的方法。提出了许多具有代表性的示例,以证明该方法的各种独特功能。结果包括具有均匀超低旁瓣的圆形和椭圆形光圈形状的求和和差模式

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