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Raking the Cocktail Party

机译:举办鸡尾酒会

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摘要

We present the concept of an acoustic rake receiver—a microphone beamformer that uses echoes to improve the noise and interference suppression. The rake idea is well-known in wireless communications; it involves constructively combining different multipath components that arrive at the receiver antennas. Unlike spread-spectrum signals used in wireless communications, speech signals are not orthogonal to their shifts. Therefore, we focus on the spatial structure, rather than the temporal. Instead of explicitly estimating the channel, we create correspondences between early echoes in time and image sources in space. These multiple sources of the desired and the interfering signal offer additional spatial diversity that we can exploit in the beamformer design. We present several “intuitive” and optimal formulations of acoustic rake receivers, and show theoretically and numerically that the rake formulation of the maximum signal-to-interference-and-noise ratio beamformer offers significant performance boosts in terms of noise and interference suppression. Beyond signal-to-noise ratio, we observe gains in terms of the perceptual evaluation of speech quality (PESQ) metric for the speech quality. We accompany the paper by the complete simulation and processing chain written in Python. The code and the sound samples are available online at http://lcav.github.io/AcousticRake Receiver/.
机译:我们介绍了声学瑞克接收机的概念-一种使用回声来改善噪声和干扰抑制的麦克风波束形成器。耙的想法在无线通信中是众所周知的。它涉及建设性地组合到达接收机天线的不同多径分量。与无线通信中使用的扩频信号不同,语音信号与它们的移位不正交。因此,我们专注于空间结构,而不是时间结构。我们没有明确估计信道,而是在时间上的早期回声与空间中的图像源之间创建了对应关系。期望信号和干扰信号的这些多个源提供了额外的空间分集,我们可以在波束形成器设计中加以利用。我们介绍了声耙接收机的几种“直观”和最佳公式,并从理论和数字上表明,最大信噪比比波束形成器的耙公式在噪声和干扰抑制方面提供了显着的性能提升。除了信噪比之外,我们还在语音质量的语音质量(PESQ)度量的感知评估方面观察到了收益。我们在本文中随附了用Python编写的完整仿真和处理链。该代码和声音示例可从http://lcav.github.io/AcousticRake Receiver /在线获得。

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