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Variations in voice level and fundamental frequency with changing background noise level and talker-to-listener distance while wearing hearing protectors: A pilot study

机译:佩戴听力保护器时,随着背景噪音水平和听者与听者距离的变化,语音水平和基频的变化:一项试点研究

摘要

Objective: Speech production in noise with varying talker-to-listener distance has been well studied for the open ear condition. However, occluding the ear canal can affect the auditory feedback and cause deviations from the models presented for the open-ear condition. Communication is a main concern for people wearing hearing protection devices (HPD). Although practical, radio communication iscumbersome, as it does not distinguish designated receivers. A smarter radio communication protocol must be developed to alleviate this problem. Thus, it is necessary to model speech production in noise while wearing HPDs. Such a model opens the door to radio communication systems that distinguish receivers and offer more efficient communication between persons wearing HPDs. Design: Thispaper presents the results of a pilot study aimed to investigate the effects of occluding the ear on changes in voice level and fundamental frequency in noise and with varying talker-to-listener distance. Study sample: Twelve participants with a mean age of 28 participated in this study. Results: Compared to existing data, results show a trend similar to the open ear condition with the exception of the occluded quiet condition. Conclusions: This implies that a model can be developed to better understand speech production for the occluded ear.
机译:目的:对于听觉距离变化的噪声中的语音产生,已经针对开耳情况进行了很好的研究。但是,遮挡耳道会影响听觉反馈并导致与针对开放式耳部情况提出的模型产生偏差。通讯是佩戴听力保护装置(HPD)的人们的主要关注点。尽管实用,但是无线电通信很麻烦,因为它无法区分指定的接收器。必须开发出更智能的无线电通信协议来缓解这一问题。因此,有必要在佩戴HPD时对噪声中的语音产生进行建模。这种模型为无线电通信系统打开了大门,该系统可以区分接收器并在戴着HPD的人员之间提供更有效的通信。设计:本文介绍了一项初步研究的结果,旨在研究遮盖耳朵对声音水平和噪声中基音频率变化以及讲话者与听者之间的距离变化的影响。研究样本:平均年龄28岁的12名参与者参加了这项研究。结果:与现有数据相比,结果显示出与开放式耳朵状况相似的趋势,但闭塞的安静状况除外。结论:这意味着可以开发一个模型来更好地理解咬合耳朵的语音产生。

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