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Enhanced voice user interface employing spatial filtration of signals from acoustic vector sensor

机译:增强的语音用户界面采用来自声学矢量传感器的信号空间过滤

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Spatial filtration of sound is introduced to enhance speech recognition accuracy in noisy conditions. An acoustic vector sensor (AVS) is employed. The signals from the AVS probe are processed in order to attenuate the surrounding noise. As a result the signal to noise ratio is increased. An experiment is featured in which speech signals are disturbed by babble noise. The signals before and after spatial filtration are processed by an automatic speech recognition (ASR) engine. It is shown that employing spatial filtration of signals from the AVS probe leads to a significant reduction in word error rate (WER) for a dictionary of 184 words.
机译:引入了声音的空间过滤,以提高嘈杂条件的语音识别准确性。采用声学矢量传感器(AVS)。来自AVS探针的信号被处理以衰减周围的噪声。结果,信噪比增加。试验特色,其中语音信号受到禁止噪声的干扰。空间过滤之前和之后的信号由自动语音识别(ASR)发动机处理。结果表明,使用来自AVS探针的信号的空间过滤导致184个字典的字误差率(WER)的显着降低。

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