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Advanced Control to Reduce the Likelihood of Cobbles in the Tandem Rolling of Hot Metal Strip

机译:先进的控制技术可减少铁水带材热连轧中的卵石可能性

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摘要

The performance of our state-dependent Riccati equation-based controller in the face of various extended uncertainties and disturbances was shown in our previous work to be highly successful. In our previous investigation, we have taken the material of the workpiece to be of one phase (austenite) and of medium and low carbon equivalents. However, it is recognized that a disturbance such as a greater decrease in temperature while processing a material of extra-low carbon equivalent could result in a change in the phase of the workpiece. Such a change in phase can result in a wreck (a cobble) in the mill, with resulting downtime and the possibility of equipment damage. In this paper, we expand our previous work to examine the effects of changes in the temperature of a workpiece of extra-low carbon equivalent and show that any resulting changes in the phase of the workpiece are effectively handled by our controller to reduce the likelihood of cobbles in the mill.
机译:我们以前的工作表明,面对各种扩展的不确定性和干扰,基于状态的Riccati方程式控制器的性能非常成功。在我们先前的研究中,我们将工件的材料定为单相(奥氏体),并且碳当量和中碳当量。然而,已经认识到,在处理碳含量极低的材料时,诸如温度的更大降低之类的干扰会导致工件的相变。这种相位变化会导致轧机中的残骸(卵石),从而导致停机时间和设备损坏的可能性。在本文中,我们扩展了以前的工作,以研究碳含量极低的工件温度变化的影响,并表明,由控制器有效地处理了工件相态的任何由此产生的变化,从而降低了发生碳黑的可能性。磨坊里的鹅卵石。

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