高性能多轴数控弯管机伺服变频器设计

Jayasheela Deepa Jabavathi, Habeebullah Sait, R. K, Muhammad Ehsan R, Vinod S
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引用次数: 1

摘要

本文介绍了一种工业用伺服变频器的设计。在锅炉部件制造过程中,高性能机器通常配备由同步伺服电机和伺服逆变器组成的运动控制。介绍了五轴数控管材加工中伺服变频器的设计要点。详细介绍了系统的主直流电源单元、伺服变频器、伺服电机等主要级的配置,并配以相应的插图。伺服逆变器由产生主直流电源的再生电源单元提供,并由CNC控制器控制。对驱动机械功率、直流母线连续和峰值功率、连续和峰值再生功率、同步系数的计算作了较好的说明,并进行了实时比较。提出了一种具有智能能源模式的再生电源单元,以减少市电侧的电流和功率峰值,将设备最大电流限制在标称电流的1.1倍,从而实现节能。本文将为工业应用中使用伺服逆变系统的项目规划提供良好的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Servo Inverter Design for High Performance Multi-axis CNC Tube Bending Machine
In this paper, the design of servo inverter used for an industrial application is presented. In boiler component manufacturing processes, high performance machines are often equipped motion controls consisting of synchronous servo motors and servo inverters. The design of important aspects of servo inverter used in a five axis CNC tube machine are explained. The configuration of main stages of the system such as main dc supply unit, servo inverter drives, servo motors etc. are detailed with relevant illustrations. The servo inverters are supplied with a regenerative power supply unit producing main dc power and are controlled by a CNC controller. The calculation of mechanical power for drives, dc bus continuous and peak power, continuous and peak regenerative power, simultaneity factor are well explained in this paper with a real time comparison. A regenerative power supply unit with smart energy mode to reduce current and power peaks on the mains side is also proposed to limit the maximum device current to 1.1 fold value of the nominal current and to achieve energy savings. This paper will be a good guide for project planning for industrial applications using servo inverter systems.
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