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Disturbance and Response Time Improvement of Submicrometer Precision Linear Motion System by Using Modified Disturbance Compensator and Internal Model Reference Control

机译:改进的干扰补偿器和内模参考控制改善亚微米精密线性运动系统的干扰和响应时间

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摘要

Permanent magnet linear motors are a type of linear motors that are generally used in precision motion control applications. However, the position of motor is easily disturbed by external force, disturbance, and variation in parameters of plant. Therefore, the construction of the high-precision linear motion system is a difficult task. This paper implements a modified disturbance observer and compensator, which includes a novel variable gain, to overcome the effects of unknown parameters of the motor, to minimize the effect of the disturbance, and to reduce the response time of the disturbance. This compensated linear motor is further controlled by the internal model reference control algorithm so that the position of the motor can be tracked with expected response precisely. The authors conducted the experiments and verified the feasibility of the high-precision positioning control. Compared with the case of normal disturbance compensator, the experimental results also illustrate the improvements of the novel variable gain, which reduces the response time toward the command signal and the external disturbance.
机译:永磁线性电动机是一种线性电动机,通常用于精密运动控制应用中。但是,电动机的位置容易受到外力,干扰和设备参数变化的干扰。因此,高精度线性运动系统的构造是困难的任务。本文实现了一种改进的扰动观测器和补偿器,其中包括新颖的可变增益,以克服电动机未知参数的影响,以最小化扰动的影响,并减少扰动的响应时间。补偿后的线性电动机进一步受到内部模型参考控制算法的控制,从而可以精确跟踪期望响应的电动机位置。作者进行了实验,并验证了高精度定位控制的可行性。与常规干扰补偿器的情况相比,实验结果还说明了新型可变增益的改进,从而减少了对命令信号和外部干扰的响应时间。

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