Combining null-steering and adaptive filtering for acoustic feedback cancellation in a multi-microphone earpiece

H. Schepker, L. Tran, S. Nordholm, S. Doclo
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引用次数: 4

Abstract

Commonly adaptive filters are used to reduce the acoustic feedback in hearing aids. While theoretically allowing for perfect cancellation of the feedback signal, in practice the adaptive filter solution is typically biased due to the closed-loop hearing aid system. In contrast to conventional behind-the-ear hearing aids, in this paper we consider an earpiece with multiple integrated microphones. For such an earpiece it has previously been proposed to use a fixed null-steering beamformer to reduce the acoustic feedback in the microphones. In this paper we propose to combine the fixed null-steering beamformer with an additional adaptive filter to cancel the residual feedback component in the beamformer output. We compare the combination of the fixed null-steering beamformer and different adaptive filtering algorithms including subband adaptive filtering and the prediction-error-method based fullband adaptive filtering with using either of the two approaches alone. Experimental results using measured acoustic feedback show the benefit of using the combined approach compared to using either of the two approaches to cancel the acoustic feedback.
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结合零转向和自适应滤波的多麦克风耳机声反馈抵消
在助听器中,常用自适应滤波器来减小声反馈。虽然理论上允许完美地抵消反馈信号,但在实践中,自适应滤波器解决方案通常由于闭环助听器系统而产生偏置。与传统耳后助听器相比,本文考虑了一种具有多个集成麦克风的耳机。对于这种耳机,以前曾建议使用固定的零方向波束形成器来减少麦克风中的声学反馈。本文提出将固定零导向波束形成器与附加的自适应滤波器相结合,以抵消波束形成器输出中的残留反馈分量。我们比较了固定零导向波束形成器与不同自适应滤波算法的组合,包括子带自适应滤波和基于预测误差法的全带自适应滤波,以及单独使用两种方法中的任何一种。测量声反馈的实验结果表明,与使用两种方法中的任何一种方法抵消声反馈相比,使用联合方法的好处。
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