Crystal grinding control method and system based on closed-loop cross-coupling iterative learning
A cross-coupling and iterative learning technology, applied in the field of servo control, can solve the problems of the servo system that cannot fully adapt to the high dynamic performance speed control system, and achieve the effect of improving the contour tracking ability, eliminating the contour error and improving the tracking performance.
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[0054] For the above contour grinding control system based on discrete cross-coupling iterative learning, see figure 2 , which is a flow chart showing the steps of the method for contour grinding control based on discrete cross-coupling iterative learning according to an embodiment of the present invention, including the following steps:
[0055] S10, establishing a mathematical model of the crystal grinding servo system;
[0056] S20, establishing a discrete closed-loop cross-coupling iterative learning controller to control the position;
[0057] S30, the discrete closed-loop iterative learning controller generates a new control signal;
[0058] S40, the controller obtains a new tracking error according to the expected position information and the actual information;
[0059] S50, distribute model compensation to each axis through the contour error to eliminate the influence of each axis on other axes.
[0060] In specific implementation, S10 includes the following steps...
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