利用点阵正交法消除立体声回声

K. Mayyas
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引用次数: 18

摘要

立体声电话会议通过其增强的声音定位提供了更自然的声音感知。最重要的是立体声回波抵消(SAEC),这对低复杂度自适应算法实现可接受的AEC提出了困难的挑战,主要是由于双通道输入信号之间的强相互关联。提出了一种立体信号固有去相关的变换域双通道点阵算法。然而,对于大阶滤波器n,该算法具有较高的计算复杂度。在加权子带方案中,利用前一算法中的双通道晶格单元的功能,开发了一种低复杂度O(4N)的算法。该算法能够产生立体信号的完整正交子带,并且还允许在性能和复杂性之间进行权衡。通过仿真和实际电话会议室脉冲响应,将所提算法的性能与其他现有算法进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stereophonic acoustic echo cancellation using lattice orthogonalization
Stereophonic teleconferencing provides more natural acoustic perception by virtue of its enhanced sound localization. Of paramount importance is stereo acoustic echo cancellation (SAEC) that poses a difficult challenge to low complexity adaptive algorithms to achieve acceptable AEC due, mainly, to the strong cross-correlation between the two-channel input signals. This paper proposes a transform domain two-channel lattice algorithm that inherently decorrelates the stereo signals. The algorithm, however, bears a high computational complexity for large filter orders, N. A low complexity O(4N) algorithm is developed based on employing the functionality of the two-channel lattice cell in the previous algorithm in a weighted subband scheme. The algorithm is capable of producing complete orthogonal subbands of the stereo signals, and also allows for a tradeoff between performance and complexity. The performance of the proposed algorithms is compared with other existing algorithms via simulations and using actual teleconferencing room impulse responses.
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