同步多个电动机的运动-智能运动控制的新可能性

I. Furstner, L. Gogolák
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引用次数: 5

摘要

目前在电动执行器领域的技术解决方案,集成了电动机,传感器和控制单元,创造了复杂的机电一体化设备。考虑到这种集成需要传感器、执行器及其控制单元之间的通信,以及与外部控制单元和传感器以及其他执行器之间的通信,这增加了它们的复杂性。传感器、执行器、控制单元和通信技术的这种集成现在通常被称为工业4.0,这是一个包含许多当代自动化、数据交换和制造技术的集体术语,促进了“智能工厂”的愿景和执行。本文研究了一组具有集成控制单元的电动执行器的编程问题,这些执行器在外部控制单元的控制下同时工作,并通过EtherCAT通信协议进行通信。以控制4个管状直线电机和2个无刷直流旋转电机为例,讨论了该问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronizing the motion of multiple electric motors — New possibilities for smart motion control
Current technological solutions in the field of electric actuators, which integrate electric motors, sensors and control units, create complex mechatronic devices. Having in mind that this integration requires communication between sensors, actuators and their control units, and also communication with external control units and sensors, as well as other actuators, adds even more to their complexity. This integration of sensors, actuators, control units and communication technologies is nowadays often referred to as Industry 4.0, which is a collective term embracing a number of contemporary automation, data exchange and manufacturing technologies and is a facilitation of the vision and execution of a “Smart Factory”. This research deals with the problem of programing a group of electric actuators with integrated control units, which work simultaneously controlled by an external control unit, while communicating through EtherCAT communication protocol. The problem is discussed by presenting a case study of controlling four tubular linear, and two brushless direct current rotating motors.
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