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Research on Feedforward Control in the linear motor direct drive XY two-dimensional platform

机译:直线电机直驱XY二维平台中的前馈控制研究

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With the rapid development of the semiconductor industry, electronic packaging products have become increasingly demanding for equipment performance in the industry. High-precision motion platforms are widely used in these devices, so their accuracy of motion directly affects the performance of the device, and thus affects the quality of industrial products and production efficiency. The representative linear motor directly drives the XY two-dimensional platform system, and its rapid response, accurate positioning, and high reliability are widely used in semiconductor packaging equipment and other fields [1]. The permanent magnet linear motor drive method does not require an intermediate conversion link, and can directly provide a linear motion, thereby reducing the error introduced by the drive chain, and can provide a drive force without contact, thereby obtaining a higher operating speed and a higher repetitive positioning accuracy which makes the system more stable [2]. Therefore, a permanent magnet linear motor is widely used in an XY two-dimensional platform system. However, a feedback control of a permanent magnet linear motor may cause a problem of motor response delay, which affects the tracking accuracy of the motor [3]. Adding a feedforward controller to the feedback control can effectively solve this problem and improves the motion accuracy of the XY platform [4]. This paper introduces a linear motor direct drive XY two-dimensional platform system, which is characterized in that the XY platform controller incorporates a feed forward controller based on feedback control. Then introduces the hardware system of this controller, introduces its control object, and its control system. Comparing the performance of the feedforward controller with that of the controller without adding the feedforward controller, the main difference is the static error and settling time. The experimental results of the two control modes show that the latter has better real-time and fast response, and can improve the real-time and movement accuracy of the XY platform.
机译:随着半导体工业的快速发展,电子封装产品对工业设备性能的要求越来越高。高精度运动平台广泛应用于这些设备中,因此其运动的准确性直接影响设备的性能,进而影响工业产品的质量和生产效率。代表性的线性电动机直接驱动XY二维平台系统,其快速响应,精确定位和高可靠性被广泛应用于半导体封装设备和其他领域[1]。永磁直线电动机的驱动方法不需要中间转换环节,可以直接提供直线运动,从而减少了驱动链引入的误差,并且可以提供无接触的驱动力,从而获得更高的运行速度和更高的效率。更高的重复定位精度使系统更加稳定[2]。因此,永磁体线性电动机被广泛地用于XY二维平台系统中。但是,永磁线性电动机的反馈控制可能会引起电动机响应延迟的问题,从而影响电动机的跟踪精度[3]。在反馈控制中添加前馈控制器可以有效解决此问题,并提高XY平台的运动精度[4]。本文介绍了一种直线电机直接驱动XY二维平台系统,其特点是XY平台控制器结合了基于反馈控制的前馈控制器。然后介绍该控制器的硬件系统,介绍其控制对象和控制系统。比较前馈控制器的性能与不添加前馈控制器的控制器的性能,主要区别在于静态误差和建立时间。两种控制模式的实验结果表明,后者具有较好的实时性和快速响应性,可以提高XY平台的实时性和运动精度。

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