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Efficient Implementation of Broadband Beamformers Using Nested Hexagonal Arrays and Frustum Filters

机译:使用嵌套六边形阵列和视锥滤波器有效实现宽带波束形成器

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A broadband beamformer is proposed based on nested hexagonal arrays, hexagonal frustum filters and multirate techniques. The nested hexagonal arrays used here consist of several hexagonal arrays of increasing size in the x-y plane (each one called subarray) where the distance between elements in each subarray is two times larger than in the previous one. The proposed beamformer consists of subarray beamformers, each one using the signals obtained from one of the nested hexagonal arrays as the input. These signals are filtered and downsampled so that the Region of Support (ROS) of the resulting 3D signals in the 3D frequency domain are the same for all subbands. The same hexagonal frustum filter design can therefore be used for all subarray beamformers to pass the desired signal and eliminate interferences. The use of nested arrays leads to larger effective aperture at low temporal frequencies and thus, better selectivity for low frequencies. Further, hexagonal arrays are known to require a lower sensor density for alias free sampling than rectangular arrays. Examples illustrate the performance of the proposed beamformer with respect to beampattern and computational complexity.
机译:提出了一种基于嵌套六边形阵列,六边形截头圆锥滤波器和多速率技术的宽带波束形成器。此处使用的嵌套六边形阵列由x-y平面中大小逐渐增加的几个六边形阵列(每个被称为子阵列)组成,其中每个子阵列中元素之间的距离是前一个的两倍。所提出的波束形成器由子阵列波束形成器组成,每个子波束形成器都使用从嵌套六边形阵列之一获得的信号作为输入。对这些信号进行滤波和下采样,以使所得3D信号在3D频域中的支持区域(ROS)对于所有子带均相同。因此,相同的六角形截头圆锥滤波器设计可用于所有子阵列波束形成器,以传递所需信号并消除干扰。嵌套阵列的使用导致在较低的时间频率处具有更大的有效孔径,从而对低频具有更好的选择性。此外,已知六边形阵列对于无混叠采样要求比矩形阵列更低的传感器密度。实例说明了所提出的波束形成器在波束图和计算复杂度方面的性能。

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