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首页> 外文期刊>Journal of the Chinese Institute of Engineers >Control of roll-to-roll manufacturing based on sensorless tension estimation and disturbance compensation
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Control of roll-to-roll manufacturing based on sensorless tension estimation and disturbance compensation

机译:基于无传感器张力估计和干扰补偿的轧辊制造控制

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摘要

In the roll-to-roll manufacturing process, transmission smoothness of the substrate and positioning accuracy are two factors that may affect the product quality. As a result, when developing roll-to-roll manufacturing systems, crucial issues such as tension control and transmission speed control of the substrate need to be thoroughly investigated. To conduct an in-depth study on the control problems of roll-to-roll manufacturing processes, this paper focuses on the design of tension and transmission speed controllers. Due to the fact that both the friction and external disturbance have a significant influence on system performance, this paper employs the disturbance compensation scheme for the control design to ameliorate both tension and transmission speed control problems in roll-to-roll manufacturing processes. Moreover, the H (infinity) control theory is exploited to assist in the design of the disturbance compensator. In particular, for tension control, by taking into account the effect of friction and the dynamic moment of inertia, this paper proposes a modified sensorless tension estimation approach. Finally, a roll-to-roll system is used to verify the effectiveness of the proposed control scheme. Experimental results validate the effectiveness of the proposed control scheme.
机译:在辊对辊制造过程中,基板的传输平滑度和定位精度是可能影响产品质量的两个因素。因此,在开发辊对辊制造系统时,需要彻底研究基板的张力控制和传输速度控制等关键问题。为了深入研究辊对辊制造过程的控制问题,本文重点研究了张力和传动速度控制器的设计。由于摩擦和外部干扰对系统性能都有显著影响,本文采用干扰补偿方案进行控制设计,以改善辊对辊制造过程中的张力和传动速度控制问题。此外,利用H(无穷大)控制理论来辅助扰动补偿器的设计。特别是在张力控制方面,通过考虑摩擦和动态惯性矩的影响,本文提出了一种改进的无传感器张力估计方法。最后,通过一个滚到滚系统验证了该控制方案的有效性。实验结果验证了该控制方案的有效性。

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