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Sparse Array Design for Wideband Beamforming with Reduced Complexity in Tapped Delay-lines

机译:扩频延迟线中复杂度降低的宽带波束形成稀疏阵列设计

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摘要

Sparse wideband array design for sensor location optimization is highly nonlinear and it is traditionally solved by genetic algorithms (GAs) or other similar optimization methods. This is an extremely time-consuming process and an optimum solution is not always guaranteed. In this work, this problem is studied from the viewpoint of compressive sensing (CS). Although there have been CS-based methods proposed for the design of sparse narrowband arrays, its extension to the wideband case is not straightforward, as there are multiple coefficients associated with each sensor and they have to be simultaneously minimized in order to discard the corresponding sensor locations. At first, sensor location optimization for both general wideband beamforming and frequency invariant beamforming is considered. Then, sparsity in the tapped delay-line (TDL) coefficients associated with each sensor is considered in order to reduce the implementation complexity of each TDL. Finally, design of robust wideband arrays against norm-bounded steering vector errors is addressed. Design examples are provided to verify the effectiveness of the proposed methods, with comparisons drawn with a GA-based design method.
机译:用于传感器位置优化的稀疏宽带阵列设计是高度非线性的,传统上是通过遗传算法(GA)或其他类似的优化方法来解决的。这是一个非常耗时的过程,并不总能保证最佳解决方案。在这项工作中,从压缩感测(CS)的角度研究了这个问题。尽管已经提出了基于CS的方法来设计稀疏窄带阵列,但是将其扩展到宽带情况并不简单,因为每个传感器都具有多个系数,并且必须同时最小化它们才能丢弃相应的传感器位置。首先,考虑针对通用宽带波束形成和频率不变波束形成的传感器位置优化。然后,考虑与每个传感器相关联的抽头延迟线(TDL)系数中的稀疏性,以降低每个TDL的实现复杂性。最后,提出了针对范数有界的转向矢量误差的鲁棒宽带阵列设计。提供设计示例以验证所提出方法的有效性,并与基于GA的设计方法进行比较。

著录项

  • 作者

    Liu W.; Hawes M.B.;

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  • 年度 100
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  • 原文格式 PDF
  • 正文语种 en
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