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Control of Decoupled Type High Precision Dual-Servo

Byoung Uk Nam, Kihyun Kim, Young Man Choi, Jung Jae Kim, Suk Won Lee, Dae Gab Gweon
JKSPE 2006;23(2):43-50.
Published online: February 1, 2006
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Recently, with rapid development of semiconductor and flat panel display, the manufacturing equipments are required to have large travel range, high productivity, and high accuracy. In this paper, an ultra precision decoupled dual servo (DDS) system is proposed to meet these requirements. And a control scheme for the DDS is studied. The proposed DDS consists of a XYθ fine stage for handling work-pieces precisely and a XY coarse stage for large travel range. The fine stage consists of four voice coil motors (VCM) and air bearing guides. The coarse stage consists of linear motors and air bearing guides. The DDS is mechanically decoupled between coarse stage and fine stage. Therefore, both stages must be controlled independently and the performance of the DDS is mainly determined by the fine stage. For high performance tracking, the controller of fine stage consists of time delay control (TDC) and perturbation observer while the controller of coarse stage is TDC alone. With these individual controllers, two kinds of dual-servo control strategies are suggested: master-slave type and parallel type. By simulations and experiments, the performances of two dual-servo control strategies are compared.

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Control of Decoupled Type High Precision Dual-Servo
J. Korean Soc. Precis. Eng.. 2006;23(2):43-50.   Published online February 1, 2006
Download Citation

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Control of Decoupled Type High Precision Dual-Servo
J. Korean Soc. Precis. Eng.. 2006;23(2):43-50.   Published online February 1, 2006
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