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Predictive optimal control for thermo-mechanical pulping processes with multi-stage low consistency refining

机译:多级低浓精制的热机械制浆工艺的预测性最佳控制

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摘要

In this paper, we present a nonlinear model based dynamic optimization approach for optimal control for thermo-mechanical pulping (TMP) processes. The method is based on nonlinear model predictive control (NMPC) technique with an economic objective function. In our previous work [1], an economically oriented NMPC (econNMPC) was presented for a two-stage TMP process with high consistency (HC) refiners. The two-stage TMP process was simulated up to the secondary refiner. In this study, we extend the previous study to multiple stages that include low consistency (LC) refining. Here we can exploit the complexity of interactions of multiple stage TMP for both performance and optimal operations. The first process is a conventional refining process with two stages of HC refining with a primary and a secondary refiner, followed by a latency chest and a third-stage LC refiner. The second TMP process has only a HC primary refiner, and the secondary stage HC refiner is replaced by multiple stages of LC refiners after the latency chest. Both TMP schemes are dynamically optimized against disturbances to produce the same target final pulp qualities while minimizing specific energy consumption of the processes. The simulation results show the potential economic benefits of the proposed method, through a reduction in total specific energy, about 24%, for the second TMP process.
机译:在本文中,我们提出了一种基于非线性模型的动态优化方法,用于热机械制浆(TMP)过程的最佳控制。该方法基于具有经济目标函数的非线性模型预测控制(NMPC)技术。在我们以前的工作中[1],提出了一种经济型的NMPC(econNMPC),用于具有高浓度(HC)精炼机的两阶段TMP工艺。对二级TMP过程进行了模拟,直到二级精制机为止。在这项研究中,我们将先前的研究扩展到多个阶段,其中包括低浓度(LC)精炼。在这里,我们可以利用多级TMP交互的复杂性来获得性能和最佳操作。第一个过程是常规的精炼过程,其中包括使用一级和二级精炼机进行HC精炼的两个阶段,然后是等待时间段和第三级LC精炼机。第二个TMP过程仅具有HC主精炼机,在等待时间之后,二级HC精炼机被多级LC精炼机代替。两种TMP方案都针对干扰进行了动态优化,以产生相同的目标最终纸浆质量,同时将工艺的特定能耗降至最低。仿真结果表明,通过第二次TMP工艺将总比能降低约24%,该方法具有潜在的经济效益。

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