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A Stochastic Approach to the Synthesis of a Robust Frequency-Invariant Filter-and-Sum Beamformer

机译:稳健的频率不变滤波和求和波束形成器综合的随机方法

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Frequency-invariant beam patterns (FIBPs) are often required by systems using an array of sensors to process broadband signals. Although several methods have been proposed to design a broadband beamformer (typically characterized by a finite impulse response (FIR) filter for each sensor) with an FIBP, until now, the case in which the spatial aperture is shorter than the involved wavelengths has very rarely been considered. In such a case, the use of a superdirective beam pattern is essential to attaining an efficient system. In this context, robustness to array imperfections and random errors is a very crucial feature. In this paper, a method to design a robust broadband beamformer that produces an FIBP for a data-independent superdirective array is proposed and compared with other potential approaches. The method generates a far-field beam pattern that reproduces the desired profile over a very wide frequency band (also if the array is shorter than the wavelength) and is based on a stochastic approach to the direct synthesis of the FIR filters. The very simple implementation and the resulting robustness of the attained filter-and-sum beamformer to array imperfections increase the applicability of the system. This fact is particularly important in the context of a audio signal processing carried out by microphone arrays, which is the main application considered in this paper.
机译:使用传感器阵列处理宽带信号的系统通常需要频率不变的波束方向图(FIBP)。尽管已经提出了几种设计带有FIBP的宽带波束形成器(通常每个传感器具有有限脉冲响应(FIR)滤波器的特征)的方法,但是到目前为止,空间孔径比所涉及的波长短的情况很少见被考虑。在这种情况下,使用超指向性光束方向图对于获得有效的系统至关重要。在这种情况下,阵列缺陷和随机错误的鲁棒性是非常关键的功能。在本文中,提出了一种设计健壮的宽带波束形成器的方法,该方法可为与数据无关的超指向阵列产生FIBP,并与其他可能的方法进行比较。该方法产生远场光束方向图,该方向图在非常宽的频带上(即使阵列比波长短)也可以再现所需的轮廓,并且该方法基于随机方法来直接合成FIR滤波器。获得的滤波器和求和波束形成器对阵列缺陷的非常简单的实现以及所产生的鲁棒性提高了系统的适用性。在麦克风阵列进行音频信号处理的情况下,这一事实尤其重要,这是本文考虑的主要应用。

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