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Temperature modeling and control in a tunnel heat-treatment furnace

机译:隧道热处理炉中温度建模与控制

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In this paper, a solution for temperature modeling and control in a tunnel heat-treatment furnace, used in metallurgy, is presented. The mathematical model of the heating technological process associated to the furnace is expressed using a system of ordinary differential equations and it is determined through analytical modeling. Based on the obtained mathematical model, a simple PID (Proportional Integral Derivative) controller is tuned, using the nonlinear systems theory. In order to obtain the restrictive control performances imposed by the heat-treatment procedure, the first form of the determined PID controller is modified using the fractional-order systems theory. The simulations of the temperature control system are presented in a comparative manner, highlighting the main differences between the case of using the integer-order controller and the case of using the fractional-order controller.
机译:本文介绍了冶金中使用的隧道热处理炉中温度建模和控制的解决方案。使用常微分方程的系统表示与炉子相关的加热技术过程的数学模型,并通过分析模拟确定。基于所获得的数学模型,使用非线性系统理论调整简单的PID(比例积分衍生物)控制器。为了获得由热处理过程施加的限制性控制性能,使用分数级系统理论修改所确定的PID控制器的第一形式。温度控制系统的模拟以比较方式呈现,突出显示使用整数控制器的情况与使用分数级控制器的情况之间的主要差异。

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