Design of Multi-axis Motion Control System for Stepping Motor

Jiebin Zhu, Gaohua Liao
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引用次数: 4

Abstract

In order to improve the load characteristics of stepper motor, give full play to the potential performance of a stepper motor, achieve higher performance, a stepper controlling system has been developed. High-speed microcontroller-based controller, enhanced parallel port (EPP) as a communication interface, Field Programmable Gates Array (FPGA) to achieve pulse signal generator, use of PC rich resources, message-driven Windows systems thinking applied to microcontroller program development, to achieve a step pulse signal a continuous, stable and adjustable linkage interpolation and modular system software. Experiments show that the control system for seam tracking control of scanning, the movement speed of up to 0.5 m/s, velocity error is less than 5% and weld Inspection deviation of less than 1mm. it not only has accurate positioning and reliable real-time, control, flexibility, speed to run wide, and strong anti-interference performance, man-machine interface, convenient, but is it good adaptability and self-protection capabilities, improved the stability and reliability of driver.
步进电机多轴运动控制系统设计
为了改善步进电机的负载特性,充分发挥步进电机的潜在性能,实现更高的性能,研制了一种步进控制系统。以高速单片机为主的控制器,增强型并口(EPP)作为通信接口,现场可编程门阵列(FPGA)实现脉冲信号发生器,利用PC机丰富的资源,将消息驱动的Windows系统思维应用于单片机程序开发,实现了对阶进脉冲信号进行连续、稳定、可调的联动插补和模块化系统软件。实验表明,该控制系统对焊缝进行扫描跟踪控制,运动速度可达0.5 m/s,速度误差小于5%,焊缝检测偏差小于1mm。它不仅具有定位准确、实时性可靠、控制灵活、跑速广、抗干扰性能强、人机界面方便,而且具有良好的适应性和自我保护能力,提高了驾驶员的稳定性和可靠性。
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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