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Modeling of an air motor servo system and robust sliding mode controller design

机译:气动马达伺服系统建模和鲁棒滑模控制器设计

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摘要

Pneumatic systems offer a number of advantages: typically they are fast, simple to maintain and inexpensive. However, the high compressibility of air makes control of the actuator very difficult. The purpose of this paper is to analyze the behaviors of a ball screw table powered by a vane-type air motor and then to design a robust sliding mode controller for position control. Due to the compressibility of the air and friction in the mechanism, the overall system is nonlinear. A robust sliding mode control is developed to overcome the effects of the uncertainty. Experimental results are given to validate the proposed position control strategy.
机译:气动系统具有许多优点:通常它们快速,易于维护且价格便宜。然而,空气的高可压缩性使得致动器的控制非常困难。本文的目的是分析由叶片式气动马达驱动的滚珠丝杠工作台的性能,然后设计一种用于位置控制的鲁棒滑模控制器。由于空气的可压缩性和机构中的摩擦力,整个系统是非线性的。开发了鲁棒的滑模控制来克服不确定性的影响。实验结果证明了所提出的位置控制策略。

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