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Rearranged coprime array to increase degrees of freedom and reduce mutual coupling

机译:重新排列的协调阵列增加自由度并减少相互耦合

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摘要

Coprime array for direction of arrivals finding has attracted increasing interest since it can provide enhanced degrees of freedom. However, due to the holes in the difference coarray, the available information is not fully exploited. In this paper, we propose a rearranged coprime array configuration to fill the holes in the coprime difference coarray. The proposed new array allows filling the holes and reducing the mutual coupling effect at the same time. We classify all the holes in a holes-triangle as a design guideline for the proposed rearranged coprime array. Few redundant sensors of the generalized coprime array are rearranged at sparse positions, which are determined by the position of holes. By doing so, the consecutive part of the conventional coprime difference coarray can be significantly increased. Meanwhile, the mutual coupling can also be dramatically reduced because the redundant sensors are relocated at remote positions. Simulation results verify the superiority of the proposed array compared with other sparse arrays.
机译:FOPRIME阵列为抵达指导发现的方向吸引了越来越兴趣,因为它可以提供增强的自由度。但是,由于差异COARRAY中的孔,可用信息不完全利用。在本文中,我们提出了一种重新排列的Coprime阵列配置,以填充CopRime差异Coarray中的孔。所提出的新阵列允许填充孔并同时降低相互耦合效果。我们将孔中的所有孔分类为建议重新排列的CopRime阵列的设计指导。少数广义的Coprime阵列的冗余传感器被重新排列在稀疏位置,这由孔的位置确定。通过这样做,可以显着增加传统的共级差异扎拉的连续部分。同时,互联耦合也可以显着减小,因为冗余传感器在远程位置处迁移。仿真结果验证了与其他稀疏阵列相比所提出的阵列的优越性。

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