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Tension control of web of winder span using adaptive gain control method

机译:自适应增益控制法控制络筒机幅幅张力

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摘要

One of the most important issues concerning the handling of the web in a roll-to-roll printing system is tension control of the web. In particular, the tension controls for the winders, including both the un-winder and re-winder, are required for the stable supply of the web and collecting of the printed electronic devices in the form of a roll without causing defects in the devices, respectively. The web tension control of the winder span requires time-variable control gains because the dynamics of the web vary with the winder roller radius. If fixed gains are used to control the web tension of the winder span regardless of changes in the radius of the winder roller, the tension could be unstable. Therefore, previous studies have tried to control the web tension of the winder span while considering the time-variable characteristics of the web dynamics by changing proportional-integral-derivative (PID) gains according to the roll radius or by applying adaptive control methods. However, most of these studies were limited to simulations. In this study, different types of fuzzy-PID controllers were applied to control winder tensions considering the dynamic characteristics of winders in a roll-to-roll system. A modified fuzzy-PID method is suggested that adjusts PID gains to correspond to changes in the dynamics of the web of the re-winder. PID gains based on these fuzzy rules vary within a range of positive values according to changes in the unwinder roller radius as opposed to the conventional fuzzy-PID controller, in which the fuzzy rules vary from negative to positive. On the other hand, the conventional fuzzy-PID controller is applied to the re-winder control to improve the response considering dynamics characteristics of re-winder that differs from that of re-winder. The proposed method was applied to the tension controls of the un-winder and re-winder of an actual roll-to-roll system and was verified through experiments. Both the simulation and experimental results showed that the proposed method can successfully control the web tension of winder systems.
机译:关于在卷对卷印刷系统中处理卷筒纸的最重要问题之一是卷筒纸的张力控制。尤其是,对于卷筒纸的稳定控制和卷筒形式的印刷电子设备的收集,而不会引起设备中的缺陷,则需要用于包括复卷机和复卷机在内的复卷机的张力控制。分别。卷绕机跨度的纸幅张力控制需要随时间变化的控制增益,因为纸幅的动态随卷绕机辊半径而变化。如果不管卷取辊的半径如何变化,都使用固定的增益来控制卷取机跨度的幅材张力,则张力可能不稳定。因此,先前的研究试图通过根据卷筒半径改变比例积分微分(PID)增益或应用自适应控制方法来控制卷取机跨度的纸幅张力,同时考虑纸幅动态特性的时变特性。但是,大多数这些研究仅限于模拟。在这项研究中,考虑到卷对卷系统中卷绕机的动态特性,将不同类型的Fuzzy-PID控制器应用于控制卷绕机张力。提出了一种改进的Fuzzy-PID方法,该方法可以调整PID增益以与复卷机纸幅的动态变化相对应。与传统的Fuzzy-PID控制器相反,基于这些模糊规则的PID增益根据展开辊半径的变化在正值范围内变化,而传统的Fuzzy-PID控制器的模糊规则从负到正变化。另一方面,考虑到与复卷机的动态特性不同的复卷机的动态特性,将常规的模糊-PID控制器应用于复卷机控制以改善响应。将该方法应用于实际卷对卷系统的开卷机和复卷机的张力控制,并通过实验进行了验证。仿真和实验结果均表明,该方法可以成功地控制络筒机的幅材张力。

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  • 来源
    《Japanese journal of applied physics》 |2014年第5s3期|05HC11.1-05HC11.7|共7页
  • 作者单位

    Department of Mechanical Engineering, Chungnam National University, Daejeon 305-764, Republic of Korea;

    Department of Mechanical & Metallurgical Engineering Education, Chungnam National University, Daejeon 305-764, Republic of Korea;

    Department of Mechanical Engineering, Chungnam National University, Daejeon 305-764, Republic of Korea;

    Department of Mechanical Engineering, Chungnam National University, Daejeon 305-764, Republic of Korea;

    Department of Mechanical Design Engineering, Chungnam National University, Daejeon 305-764, Republic of Korea;

    Department of Mechanical & Metallurgical Engineering Education, Chungnam National University, Daejeon 305-764, Republic of Korea;

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