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A Novel Method for Speech Acquisition and Enhancement by 94 GHz Millimeter-Wave Sensor

机译:94 GHz毫米波传感器进行语音采集和增强的新方法

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摘要

In order to improve the speech acquisition ability of a non-contact method, a 94 GHz millimeter wave (MMW) radar sensor was employed to detect speech signals. This novel non-contact speech acquisition method was shown to have high directional sensitivity, and to be immune to strong acoustical disturbance. However, MMW radar speech is often degraded by combined sources of noise, which mainly include harmonic, electrical circuit and channel noise. In this paper, an algorithm combining empirical mode decomposition (EMD) and mutual information entropy (MIE) was proposed for enhancing the perceptibility and intelligibility of radar speech. Firstly, the radar speech signal was adaptively decomposed into oscillatory components called intrinsic mode functions (IMFs) by EMD. Secondly, MIE was used to determine the number of reconstructive components, and then an adaptive threshold was employed to remove the noise from the radar speech. The experimental results show that human speech can be effectively acquired by a 94 GHz MMW radar sensor when the detection distance is 20 m. Moreover, the noise of the radar speech is greatly suppressed and the speech sounds become more pleasant to human listeners after being enhanced by the proposed algorithm, suggesting that this novel speech acquisition and enhancement method will provide a promising alternative for various applications associated with speech detection.
机译:为了提高非接触式方法的语音捕获能力,采用了94 GHz毫米波(MMW)雷达传感器来检测语音信号。这种新颖的非接触式语音采集方法被证明具有较高的方向灵敏度,并且不受强声干扰的影响。但是,MMW雷达语音通常会因噪声的综合来源而降低,这些噪声主要包括谐波,电路和信道噪声。本文提出了一种将经验模态分解(EMD)和互信息熵(MIE)相结合的算法,以提高雷达语音的可感知性和清晰度。首先,雷达语音信号被EMD自适应地分解为称为固有模式函数(IMF)的振荡分量。其次,利用MIE确定重构分量的数量,然后采用自适应阈值去除雷达语音中的噪声。实验结果表明,当检测距离为20 m时,94 GHz MMW雷达传感器可以有效地获取人类语音。此外,通过所提出的算法对雷达语音的噪声进行了增强,可以大大抑制雷达语音的噪声,并使听众的声音更加愉悦,这表明这种新颖的语音获取和增强方法将为与语音检测相关的各种应用提供有希望的替代方案。 。

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