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在虚拟餐厅环境中,信噪比、T60、宽动态范围压缩速度和数字降噪的影响。

The Effects of Signal to Noise Ratio, T60 , Wide-Dynamic Range Compression Speed, and Digital Noise Reduction in a Virtual Restaurant Setting.

机构信息

Department of Communication Sciences and Disorders, Northwestern University, Evanston, Illinois, USA.

Data Science and Statistics, Toronto, Ontario, Canada.

出版信息

Ear Hear. 2024;45(3):760-774. doi: 10.1097/AUD.0000000000001469. Epub 2024 Jan 23.

Abstract

OBJECTIVES

Hearing aid processing in realistic listening environments is difficult to study effectively. Often the environment is unpredictable or unknown, such as in wearable aid trials with subjective report by the wearer. Some laboratory experiments create listening environments to exert tight experimental control, but those environments are often limited by physical space, a small number of sound sources, or room absorptive properties. Simulation techniques bridge this gap by providing greater experimental control over listening environments, effectively bringing aspects of the real-world into the laboratory. This project used simulation to study the effects of wide-dynamic range compression (WDRC) and digital noise reduction (DNR) on speech intelligibility in a reverberant environment with six spatialized competing talkers. The primary objective of this study was to determine the efficacy of WDRC and DNR in a complex listening environment using virtual auditory space techniques.

DESIGN

Participants of greatest interest were listeners with hearing impairment. A group of listeners with clinically normal hearing was included to assess the effects of the simulation absent the complex effects of hearing loss. Virtual auditory space techniques were used to simulate a small restaurant listening environment with two different reverberation times (0.8 and 1.8 sec) in a range of signal to noise ratios (SNRs) (-8.5 to 11.5 dB SNR). Six spatialized competing talkers were included to further enhance realism. A hearing aid simulation was used to examine the degree to which speech intelligibility was affected by slow and fast WDRC in conjunction with the presence or absence of DNR. The WDRC and DNR settings were chosen to be reasonable estimates of hearing aids currently available to consumers.

RESULTS

A WDRC × DNR × Hearing Status interaction was observed, such that DNR was beneficial for speech intelligibility when combined with fast WDRC speeds, but DNR was detrimental to speech intelligibility when WDRC speeds were slow. The pattern of the WDRC × DNR interaction was observed for both listener groups. Significant main effects of reverberation time and SNR were observed, indicating better performance with lower reverberation times and more positive SNR.

CONCLUSIONS

DNR reduced low-amplitude noise before WDRC-amplified the low-intensity portions of the signal, negating one potential downside of fast WDRC and leading to an improvement in speech intelligibility in this simulation. These data suggest that, in some real-world environments that include both reverberation and noise, older listeners with hearing impairment may find speech to be more intelligible if DNR is activated when the hearing aid has fast compression time constants. Additional research is needed to determine the appropriate DNR strength and to confirm results in wearable hearing aids and a wider range of listening environments.

摘要

目的

在现实听力环境中对助听器进行处理很难进行有效的研究。通常情况下,环境是不可预测的或未知的,例如在佩戴者进行主观报告的可穿戴式助听器试验中。一些实验室实验创建听力环境以进行严格的实验控制,但这些环境通常受到物理空间、声源数量或房间吸声特性的限制。模拟技术通过对听力环境进行更严格的实验控制来弥补这一差距,有效地将现实世界的某些方面引入实验室。本项目使用模拟技术研究了在具有六个空间化竞争说话者的混响环境中,宽动态范围压缩 (WDRC) 和数字降噪 (DNR) 对言语可懂度的影响。本研究的主要目的是使用虚拟听觉空间技术确定 WDRC 和 DNR 在复杂听力环境中的功效。

设计

最感兴趣的参与者是听力受损的听众。还包括一组具有临床正常听力的听众,以评估模拟缺失听力损失的复杂影响时的效果。使用虚拟听觉空间技术模拟了具有两种不同混响时间(0.8 和 1.8 秒)和不同信噪比(-8.5 至 11.5 dB SNR)的小餐馆听力环境。包括六个空间化竞争说话者以进一步提高现实感。使用助听器模拟来检查言语可懂度在何种程度上受到慢和快 WDRC 与 DNR 存在或不存在的影响。选择 WDRC 和 DNR 设置是为了合理估计目前可供消费者使用的助听器。

结果

观察到 WDRC×DNR×听力状态的相互作用,即当与快 WDRC 速度结合使用时,DNR 有利于言语可懂度,但当 WDRC 速度较慢时,DNR 不利于言语可懂度。这两种听力群体均观察到 WDRC×DNR 相互作用的模式。观察到混响时间和 SNR 的显著主效应,表明在低混响时间和更积极的 SNR 下性能更好。

结论

DNR 在 WDRC 放大信号的低强度部分之前降低了低幅度噪声,从而否定了快 WDRC 的一个潜在缺点,并导致该模拟中言语可懂度的提高。这些数据表明,在包括混响和噪声的某些现实世界环境中,如果助听器具有快压缩时间常数,则激活 DNR 可能会使听力受损的老年听众发现言语更易理解。需要进一步研究以确定适当的 DNR 强度,并在可穿戴式助听器和更广泛的听力环境中确认结果。

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