Initial development of a temporal-envelope-preserving nonlinear hearing aid prescription using a genetic algorithm.

Andrew T Sabin, Pamela E Souza
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引用次数: 3

Abstract

Most hearing aid prescriptions focus on the optimization of a metric derived from the long-term average spectrum of speech, and do not consider how the prescribed values might distort the temporal envelope shape. A growing body of evidence suggests that such distortions can lead to systematic errors in speech perception, and therefore hearing aid prescriptions might benefit by including preservation of the temporal envelope shape in their rationale. To begin to explore this possibility, we designed a genetic algorithm (GA) to find the multiband compression settings that preserve the shape of the original temporal envelope while placing that envelope in the listener's audiometric dynamic range. The resulting prescription had a low compression threshold, short attack and release times, and a combination of compression ratio and gain that placed the output signal within the listener's audiometric dynamic range. Initial behavioral tests of individuals with impaired hearing revealed no difference in speech-in-noise perception between the GA and the NAL-NL2 prescription. However, gap detection performance was superior with the GA in comparison to NAL-NL2. Overall, this work is a proof of concept that consideration of temporal envelope distortions can be incorporated into hearing aid prescriptions.

基于遗传算法的时间包络保持非线性助听器处方的初步开发。
大多数助听器处方都侧重于从长期平均语音频谱中得出的指标的优化,而没有考虑处方值如何扭曲时间包络形状。越来越多的证据表明,这种扭曲会导致语音感知的系统性错误,因此,助听器处方可能会受益于在其原理中包括保存颞包膜形状。为了开始探索这种可能性,我们设计了一种遗传算法(GA)来找到保留原始时间包络形状的多频带压缩设置,同时将该包络置于听者的听觉动态范围内。由此产生的处方具有较低的压缩阈值,较短的攻击和释放时间,以及压缩比和增益的组合,将输出信号置于听者的听觉动态范围内。听力受损个体的初始行为测试显示,GA和NAL-NL2处方在噪音中言语感知方面没有差异。然而,与NAL-NL2相比,GA的间隙检测性能更好。总的来说,这项工作证明了考虑时间包络扭曲可以纳入助听器处方的概念。
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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来源期刊
Trends in Amplification
Trends in Amplification AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY-OTORHINOLARYNGOLOGY
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