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Analysis and Minimization of Interaction in Decentralized Control Systems With Application to Roll-to-Roll Manufacturing

机译:分散控制系统中相互作用的分析和最小化及其在卷对卷制造中的应用

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摘要

Analysis and minimization of interaction in multivariable systems employing decentralized controllers with application to roll-to-roll manufacturing systems are considered in this paper. A new interaction metric based on the Perron–Frobenius theory of nonnegative matrices is presented. This new metric may be used to quantify interaction in a large-scale interconnected system, establish constraints on closed-loop system stability, and provide a systematic design procedure for constructing decentralized pre-filters, which minimize interaction. The new interaction metric is applied to a roll-to-roll (R2R) manufacturing system, which utilizes decentralized control systems. R2R manufacturing is a continuous process in which flexible materials are transported on rollers through processing machinery where operations, such as printing, coating, lamination, etc., are performed to obtain finished products. Based on the Perron root interaction metric (PRIM), a comprehensive experimental study to analyze and minimize interaction on a large experimental R2R platform is presented. A representative sample of experimental results which demonstrate the applicability of PRIM is presented and discussed.
机译:本文考虑了采用分散控制器的多变量系统中相互作用的分析和最小化,并应用于卷对卷制造系统。提出了一种基于Perron–Frobenius非负矩阵理论的新交互度量。此新指标可用于量化大规模互连系统中的相互作用,建立对闭环系统稳定性的约束,并为构建分散的前置滤波器提供系统化的设计程序,从而最大程度地减少相互作用。新的交互度量适用于使用分散控制系统的卷对卷(R2R)制造系统。 R2R制造是一个连续的过程,其中柔性材料在辊子上通过加工机械运输,在加工机械上执行诸如印刷,涂层,层压等操作以获得成品。基于Perron根交互度量(PRIM),提出了一项综合实验研究,以分析和最小化大型R2R实验平台上的交互。提出并讨论了代表PRIM适用性的实验结果的代表性样本。

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