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Sound Field Classification in Small Microphone Arrays Using Spatial Coherences

机译:使用空间相干性的小型麦克风阵列中的声场分类

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The quality and performance of many multi-channel signal processing strategies in microphone arrays as well as mobile devices for the enhancement of speech intelligibility and audio quality depends to a large extent on the acoustic sound field that they are exposed to. As long as the assumption on the sound field is not met, the performance decreases significantly and may even yield worse results for the user than an unprocessed signal. Current hearing aids provide the user for instance with different programs to adapt the signal processing to the acoustic situation. Signal classification describes the signal content and not the type of sound field. Therefore, a further classification of the sound field, in addition to the signal classification, would increase the possibilities for an optimal adaption of the automatic program selection and the signal processing methods in mobile devices. To this end a sound field classification method is proposed that is based on the complex coherences between the input signals of distributed acoustic sensors. In addition to the general approach an exemplary setup of a hearing aid equipped with two microphone sensors is discussed. As only coherences are used, the method classifies the sound field regardless of the signal carried by it. This approach complements and extends the current signal classification approach used in common mobile devices. The method was successfully verified with simulated audio input signals and with real life examples.
机译:麦克风阵列以及移动设备中用于增强语音清晰度和音频质量的许多多通道信号处理策略的质量和性能在很大程度上取决于它们所暴露的声场。只要不满足对声场的假设,性能就会大大降低,甚至可能给用户带来比未处理信号更差的结果。当前的助听器例如为用户提供不同的程序,以使信号处理适应于声学情况。信号分类描述的是信号内容,而不是声场的类型。因此,除了信号分类之外,声场的进一步分类将增加在移动设备中自动程序选择和信号处理方法的最佳适配的可能性。为此,提出了一种声场分类方法,该方法基于分布式声学传感器的输入信号之间的复杂相干性。除了一般方法之外,还讨论了配备有两个麦克风传感器的助听器的示例性设置。由于仅使用相干性,因此该方法对声场进行分类,而与声场携带的信号无关。该方法补充并扩展了普通移动设备中使用的当前信号分类方法。该方法已通过模拟音频输入信号和实际示例得到了成功验证。

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