首页> 外文会议>第二届数字制造国际会议(2nd Sumposium on Digital Manufacturing ISDM'09) >A Novel Grey-fuzzy Predictive Control algorithm Based on Physical Mode for Roller Kiln
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A Novel Grey-fuzzy Predictive Control algorithm Based on Physical Mode for Roller Kiln

机译:基于物理模式的辊道窑灰模糊预测控制新算法

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This paper proposes a novel grey-fuzzy predictive control (GFPC) strategy using an on-line dynamic switching mechanism for controlling the sintering process of ceramic roller kiln. The grey predictor is applied to extract key information such as temperature parameters and gas pressure, and send the prediction information to the controller of actuator. The mathematical model which based on physical and heat conduction theory is derived and the real-time fuzzy controller is designed to make the output temperature in the sintering area follow the temperature-curve accurately. To achieve excellent transient performance and steady-state response, an on-line switching mechanism is adopted to regulate the forecasting step size of the grey predictor appropriately according to the error between reference value and real temperature of the kiln. Additionally, this kind of method can control the temperature of kiln without accurate mathematical models for the kiln effectively. To verify the GFPC strategy, the control module based on Matlab is presented. When the sintering operating condition is stable, it is a kind of effective control strategy for temperature of roller kiln.
机译:本文提出了一种新颖的灰色模糊预测控制(GFPC)策略,该策略使用在线动态切换机制来控制陶瓷辊窑的烧结过程。灰色预测器用于提取关键信息(例如温度参数和气压),并将预测信息发送到执行器的控制器。推导了基于物理和热传导理论的数学模型,并设计了实时模糊控制器,使烧结区的输出温度准确地遵循温度曲线。为了获得出色的瞬态性能和稳态响应,采用在线切换机制根据参考值与窑炉实际温度之间的误差适当地调节灰色预测器的预测步长。另外,这种方法无需有效的窑炉精确数学模型即可控制窑炉温度。为了验证GFPC策略,提出了基于Matlab的控制模块。当烧结工作条件稳定时,它是一种有效的辊道温度控制策略。

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