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A lightweight sensing method of tooth-touch sound for disabled person using remote controller

机译:使用遥控器的残疾人牙齿触摸声音的轻量感测方法

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摘要

To support disabled people to use remote controllers, several biological signals are used. The tooth- touch is one of desirable biological signals. This is because it is the simple and natural human behavior. However, a sophisticated signal processing to extract only the tooth- touch sound is needed since the tooth-touch sound is mixed with the voice sound. This paper proposes a lightweight sensing method extracting the tooth-touch without a sophisticated signal processing to eliminate only voice sound from the sound wave in which tooth-touch and voice are mixed. Instead of the audible sound wave, proposal uses a shock wave (i.e., ultrasonic wave) which is generated when the upper tooth and the lower tooth hit each other. Using the shock wave generated to detect the tooth- touch, a trivial high-pass filter can eliminate only voice sound in the lower frequency domain than in the ultrasonic domain including the tooth-touch. Through a preliminary experiment that uses a conventional microphone and well- known digital high-pass filter, we show that the used electret microphone can sense the tooth-touch as ultrasonic wave and the high-pass filter can extract only tooth-touch. Then, we show some robustness of our method by using the sound waves including the voice and tooth-touch. In addition, we design the filtering hardware to implement a small and cheap system-on-chip achieving a real-time operation. Through the implementation of Field Programmable Gate Array, and the simulation, we show that our hardware is small and performs well for a real-time operation.
机译:为了支持残疾人使用遥控器,使用了几种生物信号。牙齿触摸是理想的生物学信号之一。这是因为这是人类的简单自然的行为。然而,由于牙齿触摸声音与语音声音混合,因此需要仅提取牙齿触摸声音的复杂信号处理。本文提出了一种轻巧的感应方法,该方法无需复杂的信号处理即可提取出牙齿触摸,从而仅从混合了牙齿触摸和语音的声波中消除语音。建议使用冲击波(即超声波)代替上声波,该冲击波是在上牙和下牙相互碰撞时产生的。利用产生的冲击波来检测牙齿的触觉,一个普通的高通滤波器只能消除低频域中比包括牙齿触觉在内的超声域低的语音。通过使用常规麦克风和著名的数字高通滤波器的初步实验,我们表明,所使用的驻极体麦克风可以像超声波一样感应牙齿触摸,而高通滤波器只能提取牙齿触摸。然后,我们通过使用包括语音和牙齿触摸在内的声波展示了我们方法的一些鲁棒性。此外,我们设计了过滤硬件,以实现小型且廉价的片上系统,从而实现实时操作。通过现场可编程门阵列的实现和仿真,我们证明了我们的硬件很小,并且对于实时操作而言表现良好。

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