Design and Simulation of Predictive based on Fuzzy Logic for Kiln Temperature

Siyou Hu, Hongsheng Li, Yuanhua He
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Abstract

The temperature control system, especially the temperature of foam glass furnace is featured with non-linearity, a large time delay, multi-variable. The most important process parameter is the temperature in combustion chamber. The traditional PID control method is widely adopted in the actual production. In recent years, predictive control has been put into use due to good robustness and rapid responsive-speed. However, this method has large overshoot and large steady-state error. To solve this problem, this paper will introduce a novel method of controlling the temperature of the foam glass furnace: predictive temperature control based on fuzzy logic. The simulation of the overall system was implemented and tested in MATLAB/Simulink environment. The result shows that the fuzzy prediction method has better effect on the temperature control than predictive control.
基于模糊逻辑的窑炉温度预测设计与仿真
温度控制系统,特别是泡沫玻璃炉的温度控制具有非线性、大时滞、多变量的特点。最重要的工艺参数是燃烧室温度。传统的PID控制方法在实际生产中被广泛采用。近年来,预测控制因其鲁棒性好、响应速度快而得到广泛应用。但该方法存在较大的超调量和稳态误差。为了解决这一问题,本文将介绍一种新的控制泡沫玻璃炉温度的方法:基于模糊逻辑的预测温度控制。在MATLAB/Simulink环境下对整个系统进行了仿真和测试。结果表明,模糊预测方法对温度控制的效果优于预测控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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