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Experimental application of linearonlinear dynamic matrix control to a reactor of limestone slurry titrated with sulfuric acid

机译:线性/非线性动态矩阵控制在硫酸滴定石灰石浆反应器中的实验应用

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摘要

In this work, pH control of CaCO3-sulfuric acid neutralization process was realized in a stirred continuous reactor under optimum operating conditions in which the solubility of CaCO3 was maximum. The pH of the solution was controlled by using linear and nonlinear dynamic matrix control algorithm with an on-line computer control system in the reactor. A step response model was used for the dynamic matrix control. For this purpose a unit step effect was given to the manipulated variable and the changes in the pH value were obtained on-line. In the nonlinear dynamic matrix control NARMAX model was developed as an addition to the above model. When the system was in open loop, random loads were given to the manipulated variable and input and output values were obtained on-line. Using these values, NARMAX model parameters were obtained with nonlinear regression. Developed DMC and NLDMC algorithms were applied to the neutralization process and the success of the algorithms was tested according to ISE and IAE values.
机译:在这项工作中,在搅拌的连续反应器中,在CaCO3溶解度最大的最佳操作条件下,实现了对CaCO3-硫酸中和过程的pH控制。通过使用线性和非线性动态矩阵控制算法以及反应器中的在线计算机控制系统来控制溶液的pH。阶跃响应模型用于动态矩阵控制。为此目的,对调节变量赋予单位阶跃效应,并在线获得pH值的变化。在非线性动态矩阵控制中,作为上述模型的补充,开发了NARMAX模型。当系统处于开环状态时,将随机负载赋予操作变量,并在线获取输入和输出值。使用这些值,通过非线性回归获得NARMAX模型参数。将开发的DMC和NLDMC算法应用于中和过程,并根据ISE和IAE值测试了算法的成功性。

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