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Improvement of Plastic Optical Fiber Microphone Based on Moisture Pattern Sensing in Devoiced Breath

机译:基于水分模式感应的塑料光纤麦克风改进

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Conversation is the most practical and common form in communication. However, people with a verbal handicap feel a difficulty to produce words due to variations in vocal chords. This research leads to develop a new devoiced microphone system based on distinguishes between the moisture patterns for each devoiced breaths, using a plastic optical fiber (POF) moisture sensor. In the experiment, five POF-type moisture sensors with fast response were fabricated by coating swell polymer with a slightly larger refractive index than that of fiber core and were set in front of mouth. When these sensors are exposed into humid air produced by devoiced breath, refractive index in cladding layer decreases by swelling and then the POF sensor heads change to guided type. Based on the above operation principle, the output light intensities from the five sensors set in front of mouth change each other. Using above mentioned output light intensity patterns, discernment of devoiced vowels in Japanese (a,i,u,e,o) was tried by means of DynarnicProgramming-Matching (DP-matching) method. As the result, distinction rate over 90% was obtained to Japanese devoiced vowels. Therefore, using this system and a voice synthesizer, development of new microphone for the person with a functional disorder in the vocal chords seems to be possible.
机译:谈话是通信中最实用和最常见的形式。然而,由于声带的变化,口头障碍的人们感到困难。该研究利用塑料光纤(POF)湿度传感器,基于对每个Devoiced呼吸的水分模式之间的区分,开发了一种基于对潮流的湿度图案之间的新探测麦克风系统。在实验中,通过涂覆膨胀聚合物,通过略微较大折射率的折射率涂覆比纤维芯略大的折射率,并设定在嘴前的折射率上进行五种POF型水分传感器。当这些传感器暴露于由Defoiced呼吸产生的潮湿空气中时,通过膨胀,包层层中的折射率降低,然后POF传感器头变为引导型。基于上述操作原理,来自嘴前面的五个传感器的输出光强度彼此更换。使用上述输出光强度模式,通过DynArnicProgramming匹配(DP匹配)方法来试图探讨日语(A,I,U,E,O)中的Depoiced YoWels。结果,在日本德国元音下获得了90%以上的区分率。因此,使用该系统和语音合成器,为具有声音和弦函数障碍的人的人开发新麦克风似乎是可能的。

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