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A Novel Method for Partially Adaptive Broadband Beamforming

机译:一种新的部分自适应宽带波束成形方法

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In this paper, a novel subband-selective generalized sidelobe canceller (GSC) for partially adaptive broadband beamforming is proposed. The blocking matrix of the GSC is constructed such that its columns constitute a series of bandpass filters, which select signals with specific angles of arrival and frequencies. This results in bandlimited spectra of the blocking matrix outputs, which is further exploited by a subband decomposition prior to running independent unconstrained adaptive filters in each non-redundant subband. We discuss the design of both the blocking matrix using a genetic algorithm for an efficient sum-of-power-of-two coefficient format and the filter bank for the subsequent subband decomposition. By these steps, the computational complexity of our subband-selective GSC is greatly reduced compared to other adaptive GSC schemes, while performance is comparable or even enhanced due to subband decorrelation, as simulations indicate.
机译:本文提出了一种用于部分自适应宽带波束成形的新型子带选择性广义旁瓣抵消器(GSC)。 GSC的阻塞矩阵构造成使得其列构成一系列带通滤波器,这些带通滤波器选择具有特定到达角和频率的信号。这导致了阻塞矩阵输出的带限频谱,在每个非冗余子带中运行独立的无约束自适应滤波器之前,子带分解会进一步利用该频谱。我们讨论了使用遗传算法(用于有效的二次方幂和系数格式)的分块矩阵的设计以及用于后续子带分解的滤波器组的设计。通过这些步骤,与其他自适应GSC方案相比,我们的子带选择GSC的计算复杂度大大降低,而仿真表明,由于子带解相关,性能相当甚至更高。

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