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The effect of symmetric and asymmetric directional binaural listening on speech understanding with surrounding cocktail party noise

机译:对称和非对称定向双耳聆听对周围鸡尾酒会噪声的语音理解的影响

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The development of new augmenting hearing devices is reducing the separation between smart listening technologies and hearing aids. They both alter the way people perceive surrounding acoustic sources. One of their common goals is reducing the effect of noisy or crowded environments on listening capabilities. However, it is still unclear how much spatial processing, i.e. conditioning sounds depending on their direction of arrival, can be beneficial to binaural feedback. This study investigates the effect of binaural symmetrical and asymmetrical spatial processing on speech comprehension in a noisy environment, when the listeners are people with no hearing impairment. 15 participants sat at the center of four speakers positioned at 0°, 90°, 180° and 270°, listening and repeating full sentences coming from the speakers, while a competing cocktail party noise was reproduced. The task was repeated in four listening conditions: Free ear, Omnidirectional, Directional and Asymmetric, which differed by the presence and kind of spatial processing performed by a pair of glasses equipped with microphone arrays. We found that Directional and Asymmetric fittings performed similarly for frontal sources, but were significantly more effective than Free ear and Omnidirectional. Then, Asymmetric condition showed to be better than Directional for speech coming from one of the sides, but worse than Omnidirectional and Free ear. Overall, asymmetrical fitting could be exploited by augmenting hearing devices to ease communication with multiple talkers in noisy environments or to exclude or reduce the impact of unwanted noise coming from specific directions.
机译:新的增强型助听器的发展正在缩小智能聆听技术与助听器之间的距离。它们都改变了人们感知周围声源的方式。他们的共同目标之一是减少嘈杂或拥挤的环境对聆听能力的影响。然而,仍然不清楚多少空间处理,即取决于声音的到达方向的调节声音,是否对双耳反馈有益。这项研究研究了在嘈杂的环境中,当听众是没有听力障碍的人时,双耳对称和不对称空间处理对语音理解的影响。 15位参与者坐在四个分别位于0°,90°,180°和270°的扬声器的中心,聆听并重复来自扬声器的完整句子,同时再现了竞争性鸡尾酒会的声音。在四种聆听条件下重复执行此任务:自由耳朵,全向,定向和非对称,这与一副配备麦克风阵列的眼镜进行的空间处理的存在和种类有所不同。我们发现定向和非对称验配在额叶来源上的表现相似,但比自由耳朵和全方位定向更有效。然后,对于来自一侧的语音,非对称条件显示出比定向性更好,但比全向性和自由耳朵性更差。总体而言,可以通过增加听力设备来利用非对称拟合,以在嘈杂的环境中简化与多个讲话者的通信,或者排除或减少来自特定方向的有害噪声的影响。

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