具有可配置波束轮廓的低复杂度dft多波束形成阵列

Pathmapirian Nanthakumar, C. Wijenayake, C. Edussooriya, A. Madanayake
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引用次数: 0

摘要

提出了一种基于扭曲和近似离散傅立叶变换(DFT)的均匀线性阵列低复杂度多波束形成方案,尽管是在空间域中。传统的基于DFT和近似DFT的多波束成形器为产生具有固定波束轮廓的多个同时波束提供了一种低复杂性的替代方案。提出的方法旨在利用扭曲的DFT产生可配置(即可操纵)的多波束轮廓。给出了一个8元均匀线性阵列的设计实例,验证了与每个波束具有专用转向权重的传统窄带多波束形成器相比,乘法器和加法器的复杂性分别降低了81%和18%。利用翘曲变换和离散傅立叶变换的近似,提出了三种系统构型。在Xilinx Ultrascale KCU105 FPGA器件上实现的硬件设计验证了5.2 ns的最佳关键路径延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-Complexity DFT-Based Multibeamforming Arrays with Configurable Beam Profiles
A low-complexity multibeamforming scheme for uniform linear arrays is proposed based on warped and approximated discrete Fourier transform (DFT), albeit in the spatial domain. Conventional DFT- and approximated-DFT-based multibeamformers provide a low-complexity alternatives to produce multiple simultaneous beams with fixed beam profiles. The proposed approach aims to produce configurable (i.e., steerable) multibeam profiles using the warped DFT. Design examples are presented for an 8-element uniform linear array verifying, 81% and 18 % reduction in multiplier and adder complexities, respectively, when compared to a conventional narrowband multibeamformer having dedicated steering weights for each beam. Three system configurations are proposed using approximations for warped transform and the DFT. Hardware designs implemented on Xilinx Ultrascale KCU105 FPGA device verify 5.2 ns best case critical path delay.
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