基于Arduino的PWM(脉宽调制)直流电机调速系统在离心设备中的应用

Ellen Margirahayu, J. Junaidi, G. A. Pauzi, S. W. Suciyati
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引用次数: 0

摘要

采用基于arduino的PWM(脉宽调制)技术,实现了一种适用于离心机的直流电机调速系统。工具设计包括硬件和软件两部分。硬件使用Arduino Uno,无刷直流电动机,ESC(电子调速),光耦合器,4x4键盘,七段,软件使用Arduino IDE。该工具的工作原理是Arduino将处理来自键盘的输入,并向ESC(电子速度控制)提供信号,以驱动无刷直流电机。光耦传感器将检测电机旋转,并将获得的数据显示在七个分段上。该工具的工作速度范围为4,000至7,000 RPM。使用DT-2234C+转速表进行了转速测试。测试结果表明,转速为5000 RPM时误差最大,为3.62%;转速为6000 RPM时误差最小,为1.01%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DC Motor Speed Control System with PWM (Pulse Width Modulation) Technique Based on Arduino For Centrifugation Equipment Application
A DC motor speed control system with Arduino-based PWM (Pulse Width Modulation) technique has been realized for centrifugation applications. Tool design consists of hardware and software. The hardware used is Arduino Uno, brushless DC motor, ESC (electronic speed control), optocoupler, 4x4 keypad, and seven-segment, and the software used is Arduino IDE. The working principle of this tool is that Arduino will process input from the keypad and provide a signal to the ESC (electronic speed control) to drive a brushless DC motor. The optocoupler sensor will detect motor rotation, and the data obtained will be displayed on the seven segments. This tool works with a speed range of 4,000 to 7,000 RPM. Rotational speed testing has been carried out using the DT-2234C+ tachometer. The test results show the highest error occurs at a speed of 5,000 RPM which is 3.62% and the lowest error occurs at a speed of 6,000 RPM at 1.01%.
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