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A DC motor speed control using the LPC-ANFIS speech recognition system

机译:使用LPC-ANFIS语音识别系统的直流电动机速度控制

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The aim of this research is to design an implementation of the speech recognition system to control the speed of a DC motor. The Linear Predictive Coding (LPC) method is used in the speed recognition system, tuned by the Adaptive Neuro-Fuzzy Inference Systems (ANFIS) method. There are 5 (five) samples of voice signals in Bahasa Indonesia recognized by this system, i.e.: “Nyala”, “Lambat”, “Sedang”, “Cepat” and “Mati”. Every voice signal is repeated 5 (five) times until as many as 25 samples are recorded. Their voice characteristics are extracted using the LPC method represented by the LPC coefficients stored in a database system. The ANFIS method is implemented in 50 iterations to tune and to train the LPC coefficients until the least error, i.e. 0,00012446 is obtained. Voice samples originated from the internal database system are 83% successfully recognized by this system. However; samples extracted from the human voice signals of different persons - different sex from the person whose voice signals are recorded in the database system, and from various ages - are only 78,8% successfully recognized by the system. The output of the speech recognition system is coded into the ASCII Codes and converted into the PWM signal to control the speed of a DC motor.
机译:本研究的目的是设计语音识别系统的实现,以控制直流电动机的速度。线性预测编码(LPC)方法用于速度识别系统,由自适应神经模糊推理系统(ANFIS)方法调谐。这是由该系统认可的巴哈萨印度尼西亚的5(5)个语音信号,即:“Nyala”,“Lambat”,“Sedang”,“Cepat”和“Mati”。每个语音信号都重复5(5)次,直到记录多达25个样本。使用由存储在数据库系统中的LPC系数表示的LPC方法提取它们的语音特性。 ANFIS方法在50次迭代中实现,以调谐和训练LPC系数,直到获得最小的错误,即获得0,00012446。来自内部数据库系统的语音样本是该系统成功识别的83 %。然而;从不同人的人类语音信号提取的样本 - 从数据库系统中记录语音信号的人的人的不同性别,以及来自各个年龄的人 - 仅由系统成功识别78,8 %。语音识别系统的输出被编码为ASCII码并转换为PWM信号以控制DC电动机的速度。

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