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An Optimized Feedforward Decoupling PD Register Control Method of Roll-to-Roll Web Printing Systems

机译:卷对卷卷筒纸印刷系统的前馈解耦PD寄存器优化控制方法

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摘要

Roll-to-roll (R2R) printing provides a continuous printing process to print the multicolor patterns onto the flexible strip materials. The process of aligning successive print patterns on the material to form a multicolor pattern is called print registration and the registration error is the position misalignment between the two adjacent overlapped patterns. In previous studies, many works focused mainly on the dynamic model analysis and the accuracy of print registration, but few of them took the volatility of control signal into consideration, which may cause the great impact to drive motors. In this work, an optimized feedforward decoupling PD register control method is derived to generate optimized control signal without the loss of accuracy of print registration, where a novel membrane algorithm inspired by the biological functioning of cells communicating by means of delivering biochemical objects is developed to search the optimal compensation control signal instead of the exact compensation control signal. Results obtained from the simulations and industrial practice on a 7-axis rotogravure printing press show that our method can significantly decrease the 1-norm and 2-norm of control signal without losing the accuracy of print registration. The proposed method may provide a feasible way to smooth the control signal and decrease the impact to drive motors in R2R web systems.
机译:卷对卷(R2R)打印提供了连续的打印过程,可以将多色图案打印到柔性条带材料上。在材料上对齐连续的打印图案以形成多色图案的过程称为打印套准,套准误差是两个相邻重叠图案之间的位置未对准。在以前的研究中,许多工作主要集中在动态模型分析和打印套准的准确性上,但是很少考虑到控制信号的波动性,这可能会对驱动电动机产生巨大影响。在这项工作中,推导了一种优化的前馈去耦PD寄存器控制方法,以生成优化的控制信号,而不会降低打印套准的准确性,在此,开发了一种新颖的膜算法,该算法受细胞通过传递生化对象进行通信的生物功能的启发搜索最佳补偿控制信号,而不是精确的补偿控制信号。通过在7轴轮转凹版印刷机上进行的模拟和工业实践获得的结果表明,我们的方法可以显着降低控制信号的1范数和2范数,而不会降低印刷套准的准确性。所提出的方法可以提供一种可行的方式来平滑控制信号并减少对R2R Web系统中驱动电动机的影响。

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