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Maximum Versoria-criterion (MVC)-based adaptive filtering method for mitigating acoustic feedback in hearing-aid devices

机译:基于逆向设备的缓解声反馈的最大兼容标准(MVC)的自适应滤波方法

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摘要

In any digital hearing aid (HAid), the input microphone and the receiver loudspeaker are closely located. Furthermore, HAid cannot be tightly fitted for comfort reasons. Therefore, it is almost impossible to avoid the acoustic feedback present due to the leakage path between the receiver loudspeaker and the input microphone. This paper investigates acoustic feedback cancellation (AFC) by developing a hybrid adaptive filtering approach. It is proposed to use two simultaneously adapted adaptive filters as in the previous method. The adaptation algorithms are based on a delay-based normalized least mean square (NLMS) algorithm. Furthermore, gradient information from a maximum Versoria-criterion (MVC)-based algorithm is also incorporated in the proposed approach. The effectiveness of this approach is demonstrated through extensive computer simulations. (C) 2021 The Author(s). Published by Elsevier Ltd.
机译:在任何数字助听器(HAID)中,输入麦克风和接收器扬声器都紧密地位。 此外,由于舒适原因,海底不能紧密配合。 因此,几乎不可能避免由于接收器扬声器和输入麦克风之间的泄漏路径而存在的声反馈。 本文通过开发混合自适应过滤方法来调查声反馈取消(AFC)。 建议以先前的方法使用两个同时调整的自适应滤波器。 自适应算法基于基于延迟的归一化最小均方(NLMS)算法。 此外,来自最大veroria标准(MVC)的算法的梯度信息也以所提出的方法结合在一起。 通过广泛的计算机模拟证明了这种方法的有效性。 (c)2021提交人。 elsevier有限公司出版

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