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Investigation on the displacement fluctuation of the linear motor feed system considering the linear encoder vibration

机译:考虑线性编码器振动的直线电机进给系统位移波动的研究

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Optical linear encoder is generally adopted to realize the full-closed loop control for the linear motor feed system. Its reading head installed on the worktable may vibrate as a result of the excitation of disturbance harmonics, which leads to the encoder's error. This study aims to investigate the mechanism of displacement fluctuation due to the encoder's error caused by the worktable vibration in the linear motor feed system. The vibrating modes of feed system are analyzed firstly, and then the influences of three torsional vibrations on encoder's errors are investigated. The transfer function between disturbance and output response is proposed to analyze the influence of encoder's error on the displacement fluctuation. The relationships among vibration, encoder's error, thrust harmonic and displacement fluctuation are discussed in detail. The results show that the encoder's error can produce obvious displacement fluctuation for the linear motor feed system, which is actually an electromechanical coupling process due to the direct drive and full-closed loop control. Finally, three effective measures are put forward to diminish the system displacement fluctuation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通常采用光学线性编码器来​​实现线性电动机进给系统的全闭环控制。由于干扰谐波的激发,其安装在工作台上的读数头可能会振动,这会导致编码器出错。本研究旨在研究线性电机进给系统中由于工作台振动而引起的编码器误差引起的位移波动的机理。首先分析了进给系统的振动模式,然后研究了三种扭转振动对编码器误差的影响。提出了扰动与输出响应之间的传递函数,以分析编码器误差对位移波动的影响。详细讨论了振动,编码器误差,推力谐波和位移波动之间的关系。结果表明,编码器的误差会导致直线电机进给系统产生明显的位移波动,这实际上是直接驱动和全闭环控制的机电耦合过程。最后,提出了三种减小系统位移波动的有效措施。 (C)2015 Elsevier Ltd.保留所有权利。

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