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Combined Acoustic MIMO Channel Crosstalk Cancellation and Room Impulse Response Reshaping

机译:组合的MIMO MIMO通道串扰消除和房间脉冲响应整形

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Virtual 3-D sound can be easily delivered to a listener by binaural audio signals that are reproduced via headphones, which guarantees that only the correct signals reach the corresponding ears. Reproducing the binaural audio signal by two or more loudspeakers introduces the problems of crosstalk on the one hand, and, of reverberation on the other hand. In crosstalk cancellation, the audio signals are fed through a network of prefilters prior to loudspeaker reproduction to ensure that only the designated signal reaches the corresponding ear of the listener. Since room impulse responses are very sensitive to spatial mismatch, and since listeners might slightly move while listening, robust designs are needed. In this paper, we present a method that jointly handles the three problems of crosstalk, reverberation reduction, and spatial robustness with respect to varying listening positions for one or more binaural source signals and multiple listeners. The proposed method is based on a multichannel room impulse response reshaping approach by optimizing a -norm based criterion. Replacing the well-known least-squares technique by a -norm based method employing a large value for allows us to explicitly control the amount of crosstalk and to shape the remaining reverberation effects according to a desired decay.
机译:通过耳机再现的双耳音频信号可以轻松地将虚拟的3D声音传递给听众,从而确保只有正确的信号才能到达相应的耳朵。通过两个或更多个扬声器再现双耳音频信号一方面带来了串扰问题,另一方面也带来了混响问题。在串扰消除中,音频信号在扬声器再现之前通过预滤波器网络馈送,以确保只有指定的信号才能到达听众的相应耳朵。由于房间脉冲响应对空间失配非常敏感,并且由于听众在听音时可能会略微移动,因此需要可靠的设计。在本文中,我们提出了一种方法,可针对一个或多个双耳源信号和多个听众的不同听音位置,共同处理串扰,混响降低和空间鲁棒性这三个问题。所提出的方法基于通过优化基于标准的准则的多通道房间脉冲响应重塑方法。用基于-norm的方法使用大的值代替众所周知的最小二乘法,可以使我们明确地控制串扰的数量,并根据所需的衰减来塑造剩余的混响效果。

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