Rafael Rodríguez-Ponce
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引用次数: 0

摘要

电机是工业中不可缺少的机器,因此有必要确保工科学生能够快速高效地开发速度和转矩控制器。其中最常用的电机控制策略是场定向控制;然而,它的实现需要高度密集的数学处理和具有健壮硬件资源的快速处理器。一些相关的作品已经发表,但由于上述问题,它们很难复制和使用。在本文中,作者提出了一种用直接转矩控制的方法控制工业伺服电机的转矩和速度,与磁场定向控制相比,直接转矩控制以其速度和易于实现而闻名。此外,MicroPython编程语言用于新的ESP32微控制器,这使得设计更简单。通过模拟和物理实现验证了结果,从而实现了足够的运动功能。这项工作将为对工业电机控制感兴趣的学生和研究人员提供一种快速有效的实现工具。
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Controlador de servomotores industriales mediante un microcontrolador utilizando MicroPython
Electrical motors are indispensable machines in the industry, thus it is necessary to ensure that engineering students can develop speed and torque controllers, in a fast and efficient manner. One of the most commonly used motor control strategies is Field Oriented Control; however it’s implementation requieres highly-intensive math processing and a fast processor with robust hardware resources. Several related works have been published, but they are hard to replicate and use due to the aforementioned problems. In this article, the author presents a torque and speed controller for industrial servomotors by means of Direct Torque Control which is known for its speed and ease of implementation compared to Field Oriented Control. In addition, the MicroPython programming language is used on the new and novel ESP32 microcontroller, which allows greater design simplicity. Results were validated using simulations and a physical implementation, thus achieving adequate motor funcionality. This work will provide students and researchers interested in industrial motor control, a fast and effective implementation tool.
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