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Modeling, analysis and control of print registration in roll-to-roll printing presses.

机译:卷对卷印刷机中印刷套准的建模,分析和控制。

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摘要

Print registration in roll-to-roll (R2R) printing process is investigated in this dissertation. Print registration is the process of aligning multiple images that are printed in consecutive print units. The quality of the print output depends on the proper alignment of these images. A new mathematical model for print registration is developed by considering the effect of key process variables, such as web tension and transport velocity, print cylinder angular position and velocity, and the compensator roller position. Sources of machine induced disturbances and their effect on print registration are also investigated and machine design recommendations to mitigate these disturbances are given. Propagation of disturbances between print units due to web transport is investigated. The interaction, or the disturbance propagation behavior, between print units is studied by developing a new interaction metric called the Perron Root based Interaction Metric (PRIM). The new interaction metric, for large-scale interconnected systems employing decentralized controllers, is developed using tools from the Perron-Frobenius theory. A systematic procedure to minimize interaction is given by designing pre-filters for decentralized control systems. The disturbance propagation behavior with two registration control strategies is compared using the PRIM and it is found that a compensator based registration control (CRC) has smaller magnitude of disturbance propagation when compared to a print cylinder angular position based registration control (PARC). It is also found that a simple, decentralized, memoryless, state feedback controllers stabilizes print units with CRC. Results from a number of model simulations and experiments are provided to support the recommendations and conclusions.
机译:本文研究了卷对卷(R2R)打印过程中的打印配准。打印配准是对齐以连续打印单位打印的多个图像的过程。打印输出的质量取决于这些图像的正确对齐。通过考虑关键过程变量(例如卷筒纸张力和传输速度,印刷滚筒的角位置和速度以及补偿辊的位置)的影响,开发了一种用于打印套准的新数学模型。还研究了机器引起的干扰的来源及其对打印套准的影响,并给出了减轻这些干扰的机器设计建议。研究了由于卷筒纸传输造成的打印单元之间干扰的传播。通过开发一种新的交互度量(称为基于Perron根的交互度量(PRIM))来研究打印单元之间的相互作用或干扰传播行为。使用Perron-Frobenius理论的工具为使用分散控制器的大规模互连系统开发了新的交互度量。通过设计分散控制系统的预滤波器,给出了使相互作用最小化的系统程序。使用PRIM比较了两种配准控制策略的干扰传播行为,发现与基于印刷滚筒角度位置的配准控制(PARC)相比,基于补偿器的配准控制(CRC)的干扰传播幅度较小。还发现简单,分散,无记忆的状态反馈控制器可通过CRC稳定打印单元。提供了许多模型仿真和实验的结果,以支持建议和结论。

著录项

  • 作者

    Seshadri, Aravind.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 168 p.
  • 总页数 168
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:03

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