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Null-Steering Beamformer-Based Feedback Cancellation for Multi-Microphone Hearing Aids With Incoming Signal Preservation

机译:基于空转向波束形成器的反馈消除技术,用于保留传入信号的多麦克风助听器

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In hearing aids, acoustic feedback occurs due to the coupling between the hearing aid loudspeaker and microphone(s). In order to reduce the acoustic feedback, adaptive filters are commonly used to estimate the feedback contribution in the microphone(s). While theoretically allowing for perfect feedback cancellation, in practice the adaptive filter converges to an optimal solution that is typically biased due to the closed-loop acoustical system of the hearing aid. In order to avoid the adaptation to a biased optimal solution, in this paper we propose to use a fixed beamformer to cancel the acoustic feedback contribution for an earpiece with multiple integrated microphones and loudspeakers. By steering a spatial null in the direction of the hearing aid loudspeaker, we show that theoretically perfect feedback cancellation can be achieved. While previous null-steering beamforming approaches did not control for distortions of the incoming signal, in this paper we propose to incorporate a constraint based on the relative transfer function (RTF) of the incoming signal, aiming to perfectly preserve this signal. We formulate the computation of the beamformer coefficients both as a least-squares optimization procedure, aiming to minimize the residual feedback power, and as a min-max optimization procedure, aiming to directly maximize the maximum stable gain of the hearing aid. Experimental results using measured acoustic feedback paths from a custom earpiece with two microphones in the vent and a third microphone in the concha show that the proposed fixed null-steering beamformer using the RTF-based constraint provides a reduction of the acoustic feedback and substantially increases the added stable gain while preserving the incoming signal. This can even be achieved for unknown acoustic feedback paths and incoming signal directions.
机译:在助听器中,由于助听器扬声器和麦克风之间的耦合,会发生声音反馈。为了减少声音反馈,通常使用自适应滤波器来估计麦克风中的反馈贡献。虽然理论上可以实现完美的反馈消除,但实际上,自适应滤波器会收敛到最佳解决方案,该解决方案通常由于助听器的闭环声学系统而产生偏差。为了避免适应有偏的最佳解决方案,在本文中,我们建议使用固定的波束形成器来消除具有多个集成麦克风和扬声器的听筒的声反馈贡献。通过沿助听器扬声器的方向操纵空间零点,我们证明了理论上可以实现完美的反馈消除。尽管以前的空导波束成形方法不能控制输入信号的失真,但在本文中,我们建议结合基于输入信号的相对传递函数(RTF)的约束,旨在完美地保留该信号。我们将波束形成器系数的计算公式化为最小二乘优化程序(旨在最小化残余反馈功率)和最小/最大优化程序(旨在直接最大化助听器的最大稳定增益)。使用来自定制听筒的测量的声反馈路径进行的实验结果表明,该定制听筒在通气孔中有两个麦克风,在外耳中有第三个麦克风,使用基于RTF的约束条件,提出的固定式零指向波束形成器可减少声反馈,并显着增加声反馈。在保持输入信号的同时增加了稳定增益。对于未知的声反馈路径和输入信号方向,甚至可以实现这一点。

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