Dynamic gain motion control with multi-axis trajectory monitoring for machine tool systems
Jiancheng Liu, Kazuo Yamazaki, Yoich Yokoyama
Abstract
Jiancheng Liu, Kazuo Yamazaki, Yoich Yokoyama
Abstract
This paper presents a new multi-axis motion control method for high performance machine tool systems. The multi-axis motion control system proposed is mainly composed of a multi-axis motion trajectory monitoring system and an intelligent motion compensator with dynamic gain control. The multi-axis motion trajectory monitoring system calculates the motion trajectory error of all axes. The intelligent compensator with the dynamic gain control dynamically changes the servo gain to prevent a motion error from happening. A computer simulation model of CNC machine tool motion was first created. Then, a feasibility verification of the system is conducted on an actual CNC machining center. It is found that the new control method could improve the motion trajectory accuracy of the axes greatly. The control concept, system design, system implementation as well as the feasibility study of this new control method are described.
OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This paper presents a new multi-axis motion control method for high performance machine tool systems. The multi-axis motion control system proposed is mainly composed of a multi-axis motion trajectory monitoring system and an intelligent motion compensator with dynamic gain control. The multi-axis motion trajectory monitoring system calculates the motion trajectory error of all axes. The intelligent compensator with the dynamic gain control dynamically changes the servo gain to prevent a motion error from happening. A computer simulation model of CNC machine tool motion was first created. Then, a feasibility verification of the system is conducted on an actual CNC machining center. It is found that the new control method could improve the motion trajectory accuracy of the axes greatly. The control concept, system design, system implementation as well as the feasibility study of this new control method are described.
Key concepts: Trajectory, Motion control, Control theory (sociology), Machine tool, Computer science, Servo control, Servomechanism, Motion (physics)