Adaptive Kernelized Subfilter Nonlinear AEC Algorithm

Srikanth Burra, Asutosh Kar
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Abstract

The acoustic echo canceller developed based on a linear echo path suffers performance degradation due to distortion induced by the electronic components in hands-free devices. Recently kernel-based approach is proposed to minimize the effects of distortion. Here, the distortion is modeled using the kernel method. However, there exists a scope to further enhance the performance of echo cancellers. In this work, we propose an improved variant of the kernel approach for enhancing the performance by maintaining a better trade-off between the rate of convergence and steady-state. Simulation results show that the proposed approach was able to perform better than the existing kernel method in minimizing the impact of the sigmoidal-based saturation distortion on the echo cancellation performance.
自适应核化子滤波非线性AEC算法
基于线性回波路径开发的声回波消除器由于免提设备中电子元件引起的失真而导致性能下降。最近提出了一种基于核的方法来最小化失真的影响。在这里,使用核方法对失真进行建模。但是,回波消除器的性能还有进一步提高的空间。在这项工作中,我们提出了一种改进的核方法,通过在收敛速度和稳态之间保持更好的权衡来提高性能。仿真结果表明,该方法在最大限度地减少基于s型模的饱和失真对回波抵消性能的影响方面优于现有的核方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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