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Quadratically Constrained Beamforming Robust Against Direction-of-Arrival Mismatch

机译:二次约束波束形成对到达方向不匹配具有鲁棒性

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摘要

It is well known that the performance of the minimum variance distortionless response (MVDR) beamformer is very sensitive to steering vector mismatch. Such mismatches can occur as a result of direction-of-arrival (DOA) errors, local scattering, near-far spatial signature mismatch, waveform distortion, source spreading, imperfectly calibrated arrays and distorted antenna shape. In this paper, an adaptive beamformer that is robust against the DOA mismatch is proposed. This method imposes two quadratic constraints such that the magnitude responses of two steering vectors exceed unity. Then, a diagonal loading method is used to force the magnitude responses at the arrival angles between these two steering vectors to exceed unity. Therefore, this method can always force the gains at a desired range of angles to exceed a constant level while suppressing the interferences and noise. A closed-form solution to the proposed minimization problem is introduced, and the diagonal loading factor can be computed systematically by a proposed algorithm. Numerical examples show that this method has excellent signal-to-interference-plus-noise ratio performance and a complexity comparable to the standard MVDR beamformer.
机译:众所周知,最小方差无失真响应(MVDR)波束形成器的性能对转向矢量失配非常敏感。这种不匹配可能是由于到达方向(DOA)错误,局部散射,远近空间信号不匹配,波形失真,源扩散,不完全校准的阵列和失真的天线形状引起的。在本文中,提出了一种对DOA不匹配具有鲁棒性的自适应波束形成器。该方法施加了两个二次约束,使得两个转向矢量的幅度响应超过了单位。然后,使用对角加载方法来迫使这两个转向矢量之间的到达角处的幅度响应超过单位。因此,该方法可以在抑制干扰和噪声的同时,始终使期望角度范围内的增益超过恒定水平。介绍了一种针对所提出的最小化问题的闭式解,并且该对角线加载因子可以通过所提出的算法来系统地计算。数值示例表明,该方法具有出色的信噪比加噪声比性能,并且其复杂度可与标准MVDR波束形成器相比。

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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