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首页> 外文期刊>IEEE Transactions on Control Systems Technology >The analysis and design of spatial control systems in strip metal rolling
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The analysis and design of spatial control systems in strip metal rolling

机译:带钢轧制空间控制系统的分析与设计

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摘要

Commercial pressures on metal strip manufacturers drive ever greater demands on the control of residual stress distributions within the finished strip. Rolling mills in current use have a range of actuators available to attempt this control and new designs are being offered with arrays of similar actuators distributed across the width of the mill. The interaction of these actuators motivates a thorough analysis of spatial control in strip metal rolling. This paper takes theory that has been successfully applied to the paper and plastics industry and applies it for the first time to the strip rolling process, giving a toolkit for the analysis and design of current and future cross-directional control systems. Data from a state of the art commercial mill is used to allow characterization of typical error signals in terms of orthogonal basis functions. Actuators are analyzed to show how much power they have within the "spectrum" of this basis function expansion. Sensors are analyzed to show their filtering effect within the spectrum. The consequent theory is used to give a rationale to future actuator design and a benchmark for the assessment of control performance with existing actuators. Two control strategies are investigated and compared-minimum variance and mini-max-and their achievements characterized. Control system sensitivity is assessed.
机译:金属带材制造商的商业压力对控制成品带材内的残余应力分布提出了越来越高的要求。当前使用的轧机具有一系列可用于尝试这种控制的致动器,并且新设计提供了一系列分布在轧机宽度上的类似致动器阵列。这些执行器的相互作用促使对带材金属轧制中的空间控制进行全面的分析。本文采用了已成功应用于造纸和塑料行业的理论,并将其首次应用于带材轧制过程,为分析和设计当前和未来的横向控制系统提供了一个工具包。来自最先进的商业工厂的数据用于根据正交基函数表征典型的误差信号。对执行器进行分析,以显示它们在此基本功能扩展的“频谱”内具有多少功率。分析传感器以显示其在光谱范围内的滤波效果。结果理论用于为将来的执行器设计提供理论依据,并为评估现有执行器的控制性能提供基准。研究并比较了两种控制策略-最小方差和最小-最大-及其取得的成就。评估控制系统的灵敏度。

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