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Localization of virtual sound sources with bilateral hearing aids in realistic acoustical scenes

机译:在真实的听觉场景中使用双边助听器对虚拟声源进行定位

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摘要

Sound localization with hearing aids has traditionally been investigated in artificial laboratory settings. These settings are not representative of environments in which hearing aids are used. With individual Head-Related Transfer Functions (HRTFs) and room simulations, realistic environments can be reproduced and the performance of hearing aid algorithms can be evaluated. In this study, four different environments with background noise have been implemented in which listeners had to localize different sound sources. The HRTFs were measured inside the ear canals of the test subjects and by the microphones of Behind-The-Ear (BTEs) hearing aids. In the first experiment the system for virtual acoustics was evaluated by comparing perceptual sound localization results for the four scenes in a real room with a simulated one. In the second experiment, sound localization with three BTE algorithms, an omnidirectional microphone, a monaural cardioid-shaped beamformer and a monaural noise canceler, was examined. The results showed that the system for generating virtual environments is a reliable tool to evaluate sound localization with hearing aids. With BTE hearing aids localization performance decreased and the number of front-back confusions was at chance level. The beamformer, due to its directivity characteristics, allowed the listener to resolve the front-back ambiguity.
机译:传统上,已经在人工实验室环境中研究了带有助听器的声音定位。这些设置不代表使用助听器的环境。通过单独的与头部相关的传递函数(HRTF)和房间模拟,可以再现真实的环境并可以评估助听器算法的性能。在这项研究中,已经实现了四个不同的背景噪声环境,听众不得不在其中定位不同的声源。 HRTF是通过测试对象的耳道内部以及耳后助听器(BTE)的麦克风进行测量的。在第一个实验中,通过将真实房间中四个场景的感知声音定位结果与模拟场景进行比较,评估了虚拟声学系统。在第二个实验中,研究了使用三种BTE算法,全向麦克风,单声道心形波束形成器和单声道噪声消除器进行声音定位。结果表明,用于生成虚拟环境的系统是使用助听器评估声音定位的可靠工具。使用BTE助听器时,本地化性能下降,前后混淆的数量处于偶然水平。波束形成器由于其方向性特性,使收听者可以解决前后歧义。

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