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Adaptive Combination of Volterra Kernels and Its Application to Nonlinear Acoustic Echo Cancellation

机译:Volterra核的自适应组合及其在非线性回声抵消中的应用

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The combination of filters concept is a simple and flexible method to circumvent various compromises hampering the operation of adaptive linear filters. Recently, applications which require the identification of not only linear, but also nonlinear systems are widely studied. In this paper, we propose a combination of adaptive Volterra filters as the most versatile nonlinear models with memory. Moreover, we develop a novel approach that shows a similar behavior but significantly reduces the computational load by combining Volterra kernels rather than complete Volterra filters. Following an outline of the basic principles, the second part of the paper focuses on the application to nonlinear acoustic echo cancellation scenarios. As the ratio of the linear to nonlinear echo signal power is, in general, a priori unknown and time-variant, the performance of nonlinear echo cancellers may be inferior to a linear echo canceller if the nonlinear distortion is very low. Therefore, a modified version of the combination of kernels is developed obtaining a robust behavior regardless of the level of nonlinear distortion. Experiments with noise and speech signals demonstrate the desired behavior and the robustness of both the combination of Volterra filters and the combination of kernels approaches in different application scenarios.
机译:滤波器概念的组合是一种简单而灵活的方法,可以避免各种妨碍自适应线性滤波器工作的折衷方案。近来,不仅要求识别线性系统而且要求识别非线性系统的应用已得到广泛研究。在本文中,我们提出了将自适应Volterra滤波器作为具有记忆功能的最通用的非线性模型的组合。此外,我们开发了一种新颖的方法,该方法显示了相似的行为,但通过组合Volterra内核而不是完整的Volterra滤波器来显着降低了计算负荷。在概述了基本原理之后,本文的第二部分重点介绍了在非线性声学回声消除方案中的应用。由于线性回波信号功率与非线性回波信号功率之比通常是先验未知且随时间变化,因此,如果非线性失真非常低,则非线性回波抵消器的性能可能会比线性回波抵消器差。因此,开发了内核组合的修改版本,无论非线性失真的程度如何,都可以获得鲁棒的性能。噪声和语音信号的实验证明了在不同的应用场景中,Volterra滤波器组合和内核方法组合所具有的理想性能和鲁棒性。

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