Servo system contour control method based on task polar coordinate system

A technology of polar coordinate system and servo system, applied in the field of contour control of servo system based on task polar coordinate system, can solve the problem of large contour error and achieve the effect of reducing contour error

Active Publication Date: 2014-04-30
HARBIN INST OF TECH SHENZHEN GRADUATE SCHOOL
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AI Technical Summary

Problems solved by technology

[0014] Chinese invention patents "A Contour Control Method for Complicated Trajectories" (Patent No.: 200710030228.5) and "Direct Drive XY Platform Contour Control Method Based on Predictive Control and Cross-Coupling" (Patent No.: 201210359218.7) both adopt cross-coupling control strategies, On the basis of multiple existing single-axis control loops, the closed-loop control of the contour error is realized by integrating a contour controller. There is a coupling effect between the contour control and the tracking control, which causes the contour performance to be affected by the tracking performance. High-speed The contour error is large during processing

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  • Servo system contour control method based on task polar coordinate system
  • Servo system contour control method based on task polar coordinate system
  • Servo system contour control method based on task polar coordinate system

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Embodiment Construction

[0029] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0030] A servo system contour control method based on a task polar coordinate system, comprising the following steps:

[0031] S1, establish the dynamic equation of the XY motion platform;

[0032] S2. According to the expected trajectory information, establish the task polar coordinate system based on the approximation of the close circle, and calculate the corresponding coordinate transformation relationship;

[0033] S3. Convert the system dynamics equation in the Cartesian coordinate system into the error dynamics equation in the task polar coordinate system;

[0034] S4. Design a feedback PD controller based on feedforward compensation to realize decoupling control of error dynamics.

[0035] The specific implementation method of step S1 "establishing the dynamic equation" is as follows:

[0036] like Figure 1 to Figure 7 As shown, in o...

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Abstract

The invention relates to a servo system contour control method, in particular to a servo system contour control method based on a task polar coordinate system. The servo system contour control method based on the task polar coordinate system comprises the first step of establishing an XY motion platform kinetic equation, the second step of establishing the task polar coordinate system based on osculating circle proximity according to expected track information and calculating the corresponding coordinate transformation relation, the third step of converting a system kinetic equation under a Cartesian coordinate system into an error kinetic equation under a task polar coordinate, and the fourth step of designing a feedback PD controller based on the feedforward compensation and achieving the decoupling control on the error kinetics. The decoupling contour control method based on the task polar coordinate system has the advantage that the contour error caused during the high-speed and large-curvature contour machining process can be greatly reduced.

Description

technical field [0001] The invention relates to a servo system contour control method, in particular to a servo system contour control method based on a task polar coordinate system. Background technique [0002] Contour control technology is one of the key technologies of modern high-end automation equipment, and is widely used in the core equipment of modern manufacturing, such as CNC machine tools, industrial robots, laser processing equipment, etc. The purpose of contour control is to control the movement of the multi-axis servo system along the desired trajectory, especially to reduce errors in the direction perpendicular to the direction of movement. The high-speed and high-precision contour control of the multi-axis servo system of CNC machine tools can achieve good workpiece surface quality, which has important practical significance and broad application prospects for modern industry. The existing contour control methods have problems such as insufficient contour e...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G05B19/19
Inventor 楼云江孟浩
Owner HARBIN INST OF TECH SHENZHEN GRADUATE SCHOOL
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