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The minimum monitoring signal-to-noise ratio for off-axis signals and its implications for directional hearing aids

机译:离轴信号的最小监视信噪比及其对定向助听器的影响

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摘要

The signal-to-noise ratio (SNR) benefit of hearing aid directional microphones is dependent on the angle of the listener relative to the target, something that can change drastically and dynamically in a typical group conversation. When a new target signal is significantly off-axis, directional microphones lead to slower target orientation, more complex movements, and more reversals. This raises the question of whether there is an optimal design for directional microphones. In principle an ideal microphone would provide the user with sufficient directionality to help with speech understanding, but not attenuate off-axis signals so strongly that orienting to new signals was difficult or impossible. We investigated the latter part of this question. In order to measure the minimal monitoring SNR for reliable orientation to off-axis signals, we measured head-orienting behaviour towards targets of varying SNRs and locations for listeners with mild to moderate bilateral symmetrical hearing loss. Listeners were required to turn and face a female talker in background noise and movements were tracked using a head-mounted crown and infrared system that recorded yaw in a ring of loudspeakers. The target appeared randomly at ± 45, 90 or 135° from the start point. The results showed that as the target SNR decreased from 0 dB to −18 dB, first movement duration and initial misorientation count increased, then fixation error, and finally reversals increased. Increasing the target angle increased movement duration at all SNRs, decreased reversals (above −12 dB target SNR), and had little to no effect on initial misorientations. These results suggest that listeners experience some difficulty orienting towards sources as the target SNR drops below −6 dB, and that if one intends to make a directional microphone that is usable in a moving conversation, then off-axis attenuation should be no more than 12 dB.
机译:助听器定向麦克风的信噪比(SNR)优势取决于收听者相对于目标的角度,这种情况在典型的群组对话中会急剧而动态地改变。当新的目标信号明显偏离轴时,定向麦克风会导致目标定向变慢,运动更复杂以及反转次数更多。这就提出了一个问题,即定向麦克风是否有最佳设计。原则上,理想的麦克风将为用户提供足够的方向性,以帮助他们理解语音,但不会强烈衰减轴外信号,以至于很难或不可能定向到新信号。我们调查了该问题的后半部分。为了测量最小监视SNR以可靠地定向到离轴信号,我们针对轻度至中度双侧对称性听力损失的听众,针对不同SNR和位置的目标测量了头部定向行为。要求听众在背景噪音中转过脸并面对女性讲话者,并使用头戴式表冠和红外线系统跟踪运动,并在扬声器环中记录偏航。目标从起点随机出现在±45、90或135°处。结果表明,随着目标SNR从0 dB降低到-18 dB,第一移动持续时间和初始方向错误计数增加,然后固定误差最终逆转增加。增加目标角度会增加所有SNR的运动持续时间,减少反转(低于-12 dB的目标SNR),并且对初始方向错误几乎没有影响。这些结果表明,随着目标SNR低于-6 dB以下,听众在朝向信号源定向时会遇到一些困难,并且如果有人打算制作可用于移动对话的定向麦克风,则轴外衰减应不超过12 D b。

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