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Control of accumulator in a continuous processing line

机译:连续生产线中蓄电池的控制

摘要

[Abstract]: Continuous processing lines are used in various manufacturing industries including aluminium, paper and steel. Common processes include annealing, pickling, metaludcoating, hot dip galvanizing, and painting. A standard design feature incorporated by continuous processing line manufacturers is the inclusion of an accumulator at the entry and exits points of the processing section to ensure its continuous operation.ududContinuous processing of strip and product quality are key performance targets for operating continuous processing lines. Uncontrolled tension transients in the strip willudnormally result in poor product quality which can be attributed to poor performance from an accumulator control system. Thus, the optimal method of controlling an accumulator in a continuous processing line is a significant and important issue.ududThis dissertation presents an analysis of methods for controlling an accumulator to minimise potential sources of disturbance. The analysis included modelling the accumulator dynamics and simulation with popular industrial control methods. Initially a base case was established using a proportional + integral + derivative controllerud(PID), which is the current standard for industrial control. The base case was used as the benchmark prior to simulation and analysis of alternative or less conventionaludindustrial controllers.ududA key emphasis of this dissertation is an association to a real world problem. The project results suggest that the classical PID controller is more suited to this applicationudthan the alternatives included in the analysis.
机译:[摘要]:连续生产线用于铝,纸和钢等各种制造业。常见的工艺包括退火,酸洗,金属底涂,热浸镀锌和喷涂。连续生产线制造商采用的标准设计功能是在加工部分的入口和出口处都装有一个蓄能器,以确保其连续运行。 ud ud带材的连续加工和产品质量是连续加工的关键性能指标线。带材中不受控制的张力瞬变通常会导致产品质量差,这归因于蓄能器控制系统的性能差。因此,在连续生产线上控制蓄电池的最佳方法是一个重要而重要的问题。 ud ud本论文对蓄电池的控制方法进行了分析,以最大程度地减少潜在的干扰源。分析包括对蓄能器动力学建模和使用流行的工业控制方法进行仿真。最初,使用比例+积分+微分控制器 ud(PID)建立了基本情况,这是当前工业控制的标准。在模拟和分析替代的或较不常规的工业控制器之前,以基本情况为基准。 ud ud本论文的重点是与现实问题的联系。项目结果表明,与分析中包含的替代方案相比,经典的PID控制器更适合此应用。

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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