利用温控回路对连续坯加热炉内压力进行先进控制以提高扰动衰减

A. Fomin, A. Glushchenko
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引用次数: 0

摘要

多区加热炉是一种时变极大的高能耗装置,其能效提升任务十分重要。已知的用于解决该问题的自适应和最优控制方法大多集中在以气体流量作为控制信号的温度控制上,而忽略了炉内压力这一重要参数。但它影响了质量、热流、温度和扰动衰减的效率。研究的目的是建立炉膛某一区域内温度与压力控制回路中执行器烟道扇滑动阻尼器位置的关系模型,并研究考虑该模型的炉膛压力控制方法。仿真结果表明,这种先进的压力控制方法可以有效地减弱钢坯通过炉门装卸引起的扰动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced Control of Pressure Inside Continuous Bloom Heating Furnace to Improve Disturbances Attenuation by Temperature Control Loop
Multi-zone heating furnaces are extremely time-varying plants with high energy consumption, for which the task of energy efficiency improvement is of high importance. Most of the known adaptive and optimal control methods to solve this problem concentrate on temperature control only with the gas flow rate as a control signal, while neglecting such an important parameter as the pressure inside the furnace. But it influences the mass-heat flows, temperature, and the efficiency of the disturbances attenuation. The purpose of the study is to develop a model of dependence of the temperature inside one zone of the furnace on the position of a sliding damper of a flue-gas fan, which is an actuator in the pressure control loop, and develop a method of the furnace pressure control, which takes into account such a model. The obtained simulation results show that such advanced pressure control allows one to effectively attenuate disturbances, which are caused by the billets loading/unloading through the furnace doors.
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