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Synthesis of sparse concentric ring arrays based on Bessel function

机译:基于贝塞尔函数的稀疏同心环阵列的合成

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In this study, a novel strategy is proposed for synthesis of sparse concentric ring arrays composed of uniformly excited elements. The synthesis problem herein is aimed at determining the sparse ring radii and the corresponding number of elements equally spaced on each ring simultaneously in order to produce circularly symmetric patterns. By using the proposed method, the above synthesis problem can be simply transformed to a single-type-variable optimisation problem since the relationship between the sparse ring radius and the element number is derived according to the properties of Bessel function. The proposed method is very efficient and flexible for synthesising direct radiating arrays and/or the scanned ones. Numerical experiments are conducted to validate the effectiveness of the proposed method. Compared with other methods, the proposed method can obtain circularly symmetric patterns using fewer elements. On this basis, the comparison of sparse array and thinning array is given through numerical experiment. Meanwhile, a scanned sparse array of 908 elements is synthesised in a circular aperture of 25 diameter with invariant peak sidelobe level of -28.9 dB, which can steer the beam from 0° to 30° in elevation and from 0° to 360° in azimuth.
机译:在这项研究中,提出了一种新的策略来合成由均匀激发元素组成的稀疏同心环阵列。这里的合成问题旨在确定稀疏环半径和同时在每个环上等距间隔的相应数量的元素,以便产生圆对称图案。通过使用所提出的方法,由于根据贝塞尔函数的性质导出了稀疏环半径与元素数量之间的关系,因此上述合成问题可以简单地转换为单类型变量优化问题。所提出的方法对于合成直接辐射阵列和/或扫描阵列非常有效且灵活。进行了数值实验,验证了所提方法的有效性。与其他方法相比,该方法可以使用较少的元素获得圆对称图案。在此基础上,通过数值实验比较了稀疏阵列和细化阵列。同时,在直径为25的圆形孔径中合成了908个元素的扫描稀疏阵列,其峰值旁瓣电平恒定为-28.9 dB,可以将光束从0°俯仰到30°,将方位角从0°偏转到360° 。

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