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A novel wavelet-based generalized sidelobe canceller

机译:一种基于小波的新型广义旁瓣抵消器

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摘要

This paper presents a novel narrow-band adaptive beamformer with the generalized sidelobe canceller (GSC) as the underlying structure. The new beamformer employs a wavelet-based approach for the design of the blocking matrix of the GSC, which is now constituted by a set of regular M-band wavelet filters. Such a construction of the blocking matrix can not only block the desired signals from the lower path as required provided the wavelet filters have sufficiently high regularity, but it also encompasses the widely used one with ones and minus ones along the diagonals as a special case. In addition, it possesses two advantageous features. First, the eigenvalue spreads of the covariance matrices of the blocking matrix outputs, as demonstrated in various scenarios, are decreased as compared with those of previous approaches. Since the popular least mean squares (LMS) algorithm has been notorious for its slow convergence rate, the reduction of the eigenvalue spreads can, in general, accelerate the convergence speed of the succeeding LMS algorithm. Second, the new beamformer belongs to a specific type of partially adaptive beamformers, wherein only a portion of the available degree of freedom is utilized in the adaptive processing. As such, the overall computational complexity is substantially reduced when compared to previous works. The issues of choosing the parameters involved for superior performance are also addressed. Simulation results are furnished as well to justify this new approach.
机译:本文提出了一种新型的窄带自适应波束形成器,其广义广义旁瓣抵消器(GSC)为基础结构。新的波束形成器采用基于小波的方法来设计GSC的阻塞矩阵,该矩阵现在由一组常规M波段小波滤波器构成。如果小波滤波器具有足够高的规则性,则阻塞矩阵的这种构造不仅可以根据需要阻塞来自较低路径的期望信号,而且在特殊情况下,它还包括沿对角线被广泛使用的带有一个和一个减号的滤波器。另外,它具有两个有利的特征。首先,与以前的方法相比,在各种情况下证明的,分块矩阵输出的协方差矩阵的特征值分布减小了。由于流行的最小均方(LMS)算法因其收敛速度慢而臭名昭著,因此,特征值分布的减小通常可以加快后继LMS算法的收敛速度。第二,新的波束形成器属于部分自适应波束形成器的特定类型,其中在自适应处理中仅利用了一部分可用自由度。这样,与以前的工作相比,总体计算复杂度大大降低了。还解决了选择参数以获得卓越性能的问题。还提供了仿真结果以证明这种新方法的合理性。

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