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Robustness Analysis of Binaural Hearing Aid Beamformer Algorithms by Means of Objective Perceptual Quality Measures

机译:基于客观感知质量测度的双耳助听器波束成形器算法的稳健性分析

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In this contribution different microphone array-based noise reduction schemes for hearing aids are suggested and compared in terms of their performance, signal quality and robustness against model errors. The algorithms all have binaural output and are evaluated using objective perceptual quality measures [1, 2, 3]. It has been shown earlier that these measures are able to predict subjective data that is relevant for the assessment of noise reduction algorithms. The quality measures showed clearly that fixed beamformers designed with head models were relatively robust against steering errors whereas for the adaptive beamformers tested in this study the robustness was limited and the benefit due to higher noise reduction depended on the noise scenario and the reliability of a direction of arrival estimation. Furthermore, binaural cue distortions introduced by the different binaural output strategies could be identified by the binaural speech intelligibility measure [3] even in case monaural quality values were similar. Thus, this perceptual quality measure seems to be suitable to discover the benefit that the listener might have from the effect of spatial unmasking.
机译:在此贡献中,提出了针对助听器的基于麦克风阵列的不同降噪方案,并就其性能,信号质量和针对模型误差的鲁棒性进行了比较。这些算法均具有双耳输出,并使用客观的感知质量测评[1、2、3]进行评估。先前已经表明,这些措施能够预测与降噪算法评估相关的主观数据。质量测量清楚地表明,采用头部模型设计的固定波束形成器相对于转向误差具有相对较强的鲁棒性,而对于本研究中测试的自适应波束形成器而言,鲁棒性是有限的,并且由于降低噪声的程度更高,其收益取决于噪声情况和方向的可靠性。到达估计数。此外,即使单声道质量值相似,也可以通过双声道语音清晰度度量[3]来识别由不同双声道输出策略引入的双声道提示失真。因此,这种感知质量度量似乎很适合发现听众可能从空间隐藏效果中获得的好处。

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