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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Back-Stepping Controller Based Web Tension Control for Roll-to-Roll Web Printed Electronics System
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Back-Stepping Controller Based Web Tension Control for Roll-to-Roll Web Printed Electronics System

机译:卷积式卷筒纸印刷电子系统中基于Backstepping控制器的卷筒纸张力控制

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摘要

There are many important applications in printed electronics and publishing industries that use the principle of roll-to-roll manufacturing to make printed electronic devices with lower cost. Web velocity and tension control algorithm plays an important role in improving the quality of product in mass processing of using roll-to-roll web technology. Most algorithms proposed in recent years use PI or PID controllers and disturbance compensation schemes to increase the precision and the stability. Due to the increasing demand of high accuracy in printed electronics industry at micrometer-level, it is necessary to have a precise control scheme of web velocity and tension in the presence of disturbances. In this paper, a precise control algorithm is proposed for non-linear single-span roll-to-roll web control system using the back-stepping controller with the design parameters chosen optimally by using the modified genetic algorithm. The outcome of this study proves the reliability throughout simulation results in Matlab/Simulink and in comparison to the experimental results.
机译:在印刷电子和出版行业中有许多重要的应用,它们使用卷对卷制造的原理来制造成本更低的印刷电子设备。卷筒纸速度和张力控制算法在使用卷对卷卷筒纸技术进行批量处理中提高产品质量方面起着重要作用。近年来提出的大多数算法都使用PI或PID控制器以及干扰补偿方案来提高精度和稳定性。由于在微米级别的印刷电子工业中对高精度的日益增长的需求,有必要在出现干扰的情况下具有精确的纸幅速度和张力控制方案。本文提出了一种针对非线性单跨跨卷幅控制系统的精确控制算法,该算法采用反步控制器,并采用改进的遗传算法对设计参数进行了优化选择。这项研究的结果证明了在Matlab / Simulink中的整个仿真结果以及与实验结果相比的可靠性。

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