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A Class of Constrained Adaptive Beamforming Algorithms Based on Uniform Linear Arrays

机译:一类基于均匀线性阵列的约束自适应波束成形算法

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摘要

A new class of adaptive beamforming algorithms is proposed based on a uniformly spaced linear array by constraining its weight vector to a specific conjugate symmetric form. The method is applied to the well-known reference signal based (RSB) beamformer and the linearly constrained minimum variance (LCMV) beamformer as two implementation examples. The effect of the additional constraint is equivalent to adding a second step in the derived adaptive algorithm. However, a difference arises for the RSB case since no direction-of-arrival (DOA) information of the desired signal is available, which leads to a two-stage structure for incorporating the imposed constraint. Compared to the traditional algorithms, the proposed ones can achieve a faster convergence speed and a higher steady state output signal-to-interference-plus-noise ratio, given the same stepsize.
机译:提出了一种基于均匀间隔线性阵列的新型自适应波束成形算法,该算法将其权重向量约束为特定的共轭对称形式。该方法作为两个实现示例,应用于众所周知的基于参考信号的(RSB)波束形成器和线性约束最小方差(LCMV)波束形成器。附加约束的效果等同于在派生的自适应算法中添加第二步。但是,由于没有所需信号的到达方向(DOA)信息可用,因此对于RSB情况会出现差异,这导致了包含合并约束的两级结构。与传统算法相比,在相同步长的情况下,提出的算法可以实现更快的收敛速度和更高的稳态输出信噪比。

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