Raspberry Pi 4 and Python Based on Speed and Direction of DC Motor

Hayder Jasim Habil, Q. A. Al-Jarwany, Majli Nema Hawas, Mohannad Jabbar Mnati
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引用次数: 1

Abstract

Technology advances at an exponential rate, resulting in a significant improvement in our living standards. It is extremely close to us, which is why we must take advantage of it because these changes imply the ability to continue progressing in any area. This project shows how a Raspberry Pi minicomputer may be used to control a Brushless motor and propeller. Thus, a system has been developed for controlling punctual angular locations, given a specific menu, and for stabilizing said positions even in the presence of external disturbances, by adjusting the rotational speed of a Brushless motor through changes in the percentage of a signal pulse width PWM. The controller and data collecting was programmed using the Thonny development environment, which is based on the Python programming language. The results of the implementation suggest that using a low-cost minicomputer, as a control device is beneficial.
基于直流电机速度和方向的树莓派4和Python
科技以指数级的速度进步,使我们的生活水平有了显著的提高。它离我们非常近,这就是为什么我们必须利用它,因为这些变化意味着我们有能力在任何领域继续进步。这个项目展示了如何用树莓派微型计算机来控制无刷电机和螺旋桨。因此,已经开发了一种系统,用于控制准时角位置,给定特定菜单,并且即使在存在外部干扰的情况下,通过改变信号脉冲宽度PWM的百分比来调整无刷电机的转速,从而稳定所述位置。控制器和数据采集采用基于Python编程语言的Thonny开发环境进行编程。实施结果表明,使用低成本的小型计算机作为控制装置是有益的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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