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首页> 外文期刊>Journal of Mechanical Science and Technology >A robust sliding mode controller design for a ball screw table driven by an air motor
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A robust sliding mode controller design for a ball screw table driven by an air motor

机译:气动马达驱动的滚珠丝杠工作台的鲁棒滑模控制器设计

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摘要

Air motors are often applied in the automation industry in areas with special requirements, such as in spark-prohibited environments, the mining industry, chemical manufacturing plants, and similar locations. The purpose of this study is to analyze the behaviors of a ball screw table powered by a vane-type air motor and to design a robust sliding mode controller for the inlet pressure. The rotational speed of the air motor is closely related to the pressure and flow rate of the compressed air. Furthermore, the compressibility of the air and the friction in the mechanism mean that the overall system is nonlinear, with fluctuating input. A robust sliding mode control is developed to overcome the effects of variations in the inlet pressure and air leakage problems. The experimental results validate the robustness of the proposed position control strategy.
机译:气动马达通常用于自动化行业中有特殊要求的区域,例如在禁止火花的环境,采矿业,化工厂和类似地点。这项研究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,并设计一种用于进口压力的鲁棒滑模控制器。气动马达的转速与压缩空气的压力和流量密切相关。此外,空气的可压缩性和机构中的摩擦力意味着整个系统是非线性的,输入波动。开发了鲁棒的滑模控制,以克服进气压力变化和漏气问题的影响。实验结果验证了所提出的位置控制策略的鲁棒性。

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