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Fuzzy predictive temperature control for a class of metallurgy lime kiln models

机译:一类冶金石灰窑炉模型的模糊预测温度控制

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摘要

The combustion temperature and progress control problems are key factors to ensure the production quality of metallurgy lime kiln. The combustion process of lime kiln is a nonlinear and large time-delay thermal process, so it is difficult to achieve satisfactory results by the traditional proportional integral derivative control, fuzzy control, or predictive control. This article analyses physics and chemistry mechanism of the combustion process and expounds the complex nonlinear, multivariable and large time-delay characteristics, and the control target of the production system. Then, the mathematical model of combustion control system is deduced in view of the requirements of simulation. Based on these, the fuzzy predictive control scheme is employed. Through simulation, the control algorithm is verified to be effective. Finally, the industrial sleeve kiln as a practical example is used to demonstrate the effectiveness and feasibility of the control algorithm. (c) 2016 Wiley Periodicals, Inc. Complexity 21: 249-258, 2016
机译:燃烧温度和进度控制问题是确保冶金石灰窑生产质量的关键因素。石灰窑的燃烧过程是一个非线性的,大延时的热过程,因此传统的比例积分微分控制,模糊控制或预测控制很难达到满意的效果。本文分析了燃烧过程的理化机理,阐述了复杂的非线性,多变量和大时延特性,以及生产系统的控制目标。然后,根据仿真要求推导了燃烧控制系统的数学模型。基于这些,采用了模糊预测控制方案。通过仿真,验证了该控制算法的有效性。最后,以工业套筒窑为例,说明了该控制算法的有效性和可行性。 (c)2016 Wiley Periodicals,Inc.复杂度21:249-258,2016

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