Masayu Anisah, Amperawan Amperawan, Sabilal Rasyad, Herman Yani, Anton Firmansyah
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引用次数: 0

摘要

控制直流电机的速度与k型热电偶温度的变化成比例,使用可编程逻辑控制器和人机界面,以监测直流电机的温度和速度,从热电偶传感器的变化作为输入,以温度数据的形式简化为模拟。以数字数据的形式转换到数字转换器,并通过调节脉宽调制来控制直流电机的转速。直流电动机对温度变化的速度控制来自一个热电偶传感器,控制系统采用可编程逻辑控制器,并显示在人机界面上。在这个测试中,只有在温度为30℃到100℃的温度下加热传感器,并且在温度较大的直流电机转速下,PWM值使直流电机转速更快。在使用频率为10 Hz的PWM控制直流电机以获得0% - 90%的PWM值时,电机将高速旋转
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Pengendali Kecepatan Motor DC Terhadap Perubahan Suhu Menggunakan PLC dan Human Machine Interface
Controlling the speed of a DC motor in proportion to changes in temperature of a K-type thermocouple uses a Programmable Logic Controller and the Human Machine Interface  to enable monitoring of the temperature and speed of the Direct Current  motor from changes in the thermocouple sensor as input in the form of temperature data reduced to analog. to digital converter  in the form of digital data and controls the speed of the DC motor by adjusting the Pulse Width Modulation. DC motor speed control for temperature changes from a thermocouple sensor with a control system using a Programmable Logic Controller and displayed on the Human Machine Interface. In this test, only heating the sensor at a temperature of 30 oC to 100 oC and the speed of the DC motor where the temperature is greater, the PWM value makes the DC motor rotate faster. In controlling DC motors with PWM using a frequency of 10 Hz to get a PWM value of 0% - <54% the motor will rotate at low speed. PWM  54% - <84%, the motor will rotate at medium speed. PWM 84% - >90%, the motor will rotate at high speed
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