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A general approach to the design and implementation of linear differential microphone arrays

机译:线性差分麦克风阵列设计和实现的通用方法

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The design of differential microphone arrays (DMAs) and the associated beamforming algorithms have become very important problems. Traditionally, an Nth order DMA is formed by subtractively combining the outputs of two DMAs of order N−1. This method, though simple and easy to implement, suffers from a number of limitations. For example, it is difficult to design the equalization filter that is needed for compensating the array's non-uniform frequency response, particularly for high-order DMAs. In this paper, we propose a new approach to the design and implementation of linear DMAs for speech enhancement. Unlike the traditional method that works in the time domain, this proposed approach works in the short-time Fourier transform (STFT) domain. The core issue with this framework is how to design the desired differential beamformer in each subband, which is accomplished by solving a linear system consisting of N +1 fundamental constraints for an Nth-order DMA.
机译:差分麦克风阵列(DMA)的设计和相关的波束形成算法已经成为非常重要的问题。传统上,通过对两个N-1阶DMA的输出进行减法组合来形成N阶DMA。这种方法虽然简单易行,但存在许多局限性。例如,很难设计出补偿阵列非均匀频率响应所需的均衡滤波器,尤其是对于高阶DMA。在本文中,我们提出了一种用于语音增强的线性DMA设计和实现的新方法。与在时域中起作用的传统方法不同,此提议的方法在短时傅立叶变换(STFT)域中起作用。该框架的核心问题是如何在每个子带中设计所需的差分波束形成器,这是通过解决一个由N阶DMA的N +1个基本约束组成的线性系统来实现的。

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