Linear motors are easily affected by load disturbances, force ripples, friction, and parameter variations because there are no mechanical transmissions that can reduce the effects of model uncertainties and external disturbance. In this study, a nonlinear adaptive controller to achieve high-speed/high-accuracy position control of a two-axis linear motor is designed. The operation of this controller is based on a cross-coupling algorithm. Nonlinear effects such as friction and force ripples are estimated and compensated for. An enhanced cross-coupling algorithm is proposed for effectively improving the biaxial contour accuracy while achieving closed-loop stability. The proposed controller is evalvated by performing computer simulations
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
The tracing precision of high-precise linear motor is greatly influenced when moved at a low speed b...
For high-speed/high-accuracy position control of a gantry-moving-type linear motor, we propose a non...
Abstract In order to ensure the high precision and good dynamic characteristics of the dual‐axis lin...
A new structure of cross-coupling controller for precise tracking in motion control is proposed in t...
XY-positioning is an important task in industrial applications. The improvement of the speed of posi...
This paper studies the high performance robust motion control of linear motors which are subjected t...
[[abstract]]In this paper, we propose a nonlinear adaptive controller and an adaptive backstepping c...
The application of linear motor-driven stages as the feed drivers of CNC micro milling machine tools...
Includes bibliographical references (pages 115-117)Coordinated motion control of two or more manipul...
Improved drive dynamics decisively boost productivity and accuracy of machine tools. Linearmotors ha...
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
The tracing precision of high-precise linear motor is greatly influenced when moved at a low speed b...
For high-speed/high-accuracy position control of a gantry-moving-type linear motor, we propose a non...
Abstract In order to ensure the high precision and good dynamic characteristics of the dual‐axis lin...
A new structure of cross-coupling controller for precise tracking in motion control is proposed in t...
XY-positioning is an important task in industrial applications. The improvement of the speed of posi...
This paper studies the high performance robust motion control of linear motors which are subjected t...
[[abstract]]In this paper, we propose a nonlinear adaptive controller and an adaptive backstepping c...
The application of linear motor-driven stages as the feed drivers of CNC micro milling machine tools...
Includes bibliographical references (pages 115-117)Coordinated motion control of two or more manipul...
Improved drive dynamics decisively boost productivity and accuracy of machine tools. Linearmotors ha...
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
Adaptive feedforward method for an industrial permanent magnet linear motor H-drive application is p...
The tracing precision of high-precise linear motor is greatly influenced when moved at a low speed b...