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首页> 外文期刊>Journal of Process Control >Model-based trajectory planning, optimization, and open-loop control of a continuous slab reheating furnace
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Model-based trajectory planning, optimization, and open-loop control of a continuous slab reheating furnace

机译:连续板坯加热炉的基于模型的轨迹规划,优化和开环控制

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摘要

A temperature control method is developed for reheating steel slabs in an industrial furnace. The work was motivated by the need for mathematically simple furnace control schemes that feature accuracy, robustness, applicability to online control, and capabilities of non-steady-state operating scenarios, where the temperature goals and other properties of the slabs may vary considerably. The proposed hierarchical control concept computes desired heat inputs for each individual slab based on a discrete-time nonlinear model. Then, a quadratic program is solved to plan reference trajectories of furnace temperatures which optimally realize the desired heat inputs into the slabs. The iterative algorithm accounts for constraints on system inputs as well as states and may be used for open-loop control or as a feedforward branch in two-degrees-of-freedom control structures. The feasibility and the limitations of the approach are demonstrated by means of an example problem.
机译:开发了一种温度控制方法来对工业炉中的钢坯进行再加热。这项工作的动机是需要数学上简单的炉子控制方案,这些方案应具有准确性,鲁棒性,在线控制的适用性以及非稳态运行方案的能力,在这些方案中,温度目标和铸坯的其他性能可能会有很大差异。所提出的分层控制概念基于离散时间非线性模型为每个单独的板计算所需的热量输入。然后,求解二次程序以计划炉温的参考轨迹,以最佳方式实现将所需热量输入到铸坯中。迭代算法考虑了对系统输入和状态的约束,可用于开环控制或用作两自由度控制结构中的前馈分支。通过一个示例问题证明了该方法的可行性和局限性。

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