POLAR PLOTS OF A DIRECTIONAL MICROPHONE WITH REAL-WORLD SOUNDS AND ITS SPECTRUM DISTORTION

Xubao Zhang PhD
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Abstract

Some references discussed and evaluated performances of conventional directional microphones in hearing aids, from their conclusions, it is undoubted for the microphones to improve S/N, yet conditions of the advantage somewhat confused to hearing aid clinicians and professionals. To supplement the incompletion, we investigated behaviors of a directional microphone in extensive situations. We built an SimuLink laboratory, selected realistic talking voices and noises from wave files and made many experiments to find out illustrative evidences. Electroacoustic models are used for components of modelling a directional microphone; we operated the microphone with these sounds from real-world to calculate, view, measure and record behaviors of the directional microphone. We acquired  many waveforms, statistics and recordings of the experiments with woman’s and man’s talking voices, and environmental noises; we also listened to sounds at input and output of the directional microphone to perceive changes of the speech naturalness. Comparing to an omni microphone, the directional microphone does not enhances the speech signals on average; sensitivity-gain of the directional microphone is higher than that of the omni microphone when the tone frequency > 1.78 kHz; the directional microphone cancels the undesired speech well, as well as the babble noise and the environmental white noise from a beamed source at rear side; the directional microphone cannot improve the S/N of a speech within babble or white noise fields; in addition, we also observed and heard the speech spectrum distortion caused by the directional microphone
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具有真实声音的定向麦克风的极坐标图及其频谱失真
一些文献对传统定向传声器在助听器中的性能进行了讨论和评价,从结论来看,传声器提高信噪比是毋庸置疑的,但其优势的条件让助听器临床医生和专业人员有些困惑。为了弥补这一缺陷,我们研究了定向传声器在广泛情况下的行为。我们建立了一个SimuLink实验室,从波文件中选取了真实的说话声音和噪声,并做了大量的实验来寻找说明性的证据。电声模型用于模拟定向麦克风的组件;我们用这些来自现实世界的声音操作麦克风,计算、观察、测量和记录定向麦克风的行为。我们获得了许多波形、统计数据和实验记录,包括女性和男性的说话声音,以及环境噪音;我们还通过聆听定向麦克风输入和输出的声音来感知语音自然度的变化。与全向传声器相比,定向传声器平均不增强语音信号;音调频率为1.78 kHz时,定向传声器的灵敏度增益高于全向传声器;定向麦克风可以很好地消除不需要的语音,以及来自后侧波束源的喋喋不休噪声和环境白噪声;定向麦克风不能在杂音或白噪声环境下提高语音的信噪比;此外,我们还观察和听到了定向麦克风引起的语音频谱失真
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