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Multiobjective economic model predictive control of mechanical pulping processes

机译:机械制浆过程的多目标经济模型预测控制

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We present a multiobjective economic model predictive control (m-econ MPC) strategy to mitigate high electrical energy demands of a two-stage mechanical pulping (MP) process. The nonlinear MP process considered in this paper consists of a primary and a secondary refiner. In the proposed m-econ MPC technique, economic performance is optimized during dynamic transitions while a stabilizing constraint is used to ensure convergence to steady-state operating points. Through simulations, we demonstrate that the m-econ MPC can reduce the energy consumed by mechanical pulping processes by up to 27%.
机译:我们提出了一种多目标经济模型预测控制(m-econ MPC)策略,以减轻两阶段机械制浆(MP)过程的高电能需求。本文中考虑的非线性MP过程由一级和二级精炼机组成。在提出的m-econ MPC技术中,在动态过渡期间优化了经济性能,同时使用稳定约束条件来确保收敛到稳态工作点。通过仿真,我们证明了m-econ MPC可以将机械制浆过程所消耗的能量减少多达27%。

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