首页> 外文期刊>Brazilian journal of chemical engineering >OPTIMIZING THE CONTROL SYSTEM OF CEMENT MILLING: PROCESS MODELING AND CONTROLLER TUNING BASED ON LOOP SHAPING PROCEDURES AND PROCESS SIMULATIONS
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OPTIMIZING THE CONTROL SYSTEM OF CEMENT MILLING: PROCESS MODELING AND CONTROLLER TUNING BASED ON LOOP SHAPING PROCEDURES AND PROCESS SIMULATIONS

机译:优化水泥铣削控制系统:基于循环成型过程和过程模拟的过程建模和控制器调整

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摘要

Based on a dynamical model of the grinding process in closed circuit mills, efficient efforts have been made to optimize PID controllers of cement milling. The process simulation is combined with an autoregressive model of the errors between the actual process values and the computed ones. Long term industrial data have been used to determine the model parameters. The data include grinding of various cement types. The M-Constrained Integral Gain Optimization (MIGO) loop shaping method is utilized to determine PID sets satisfying a certain robustness constraint. The maximum sensitivity is considered as such a criterion. Both dynamical parameters and PID sets constitute the inputs of a detailed simulator which involves all the main process characteristics. The simulation is applied over all the PID sets aiming to find the parameter region that provides the minimum integral of absolute error, which functions as a performance criterion. For each cement type a PID set is selected and put in operation in a closed circuit cement mill. The performance of the regulation is evaluated after a sufficient time period, concluding that the developed design combining criteria of both robustness and performance leads to PID controllers of high efficiency.
机译:基于闭路轧机磨削过程的动力学模型,已经做出了有效的努力来优化水泥磨的PID控制器。过程仿真与实际过程值和计算值之间的误差的自回归模型结合在一起。长期的工业数据已用于确定模型参数。数据包括各种水泥的研磨。利用M约束积分增益优化(MIGO)环路整形方法确定满足一定鲁棒性约束的PID集。最大灵敏度被认为是这样的标准。动态参数和PID集都构成了详细模拟器的输入,该模拟器涉及所有主要过程特征。该模拟应用于所有PID集,旨在找到提供绝对误差最小积分的参数区域,该参数区域用作性能标准。对于每种水泥类型,都会选择PID设置并在封闭式水泥磨机中投入运行。经过足够长的时间后,将评估该法规的性能,得出的结论是,结合了鲁棒性和性能标准的已开发设计可带来高效率的PID控制器。

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