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Predictive functional control based on an adaptive fuzzy model of a hybrid semi-batch reactor

机译:基于自适应模糊模型的混合半间歇反应器预测功能控制

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In this paper a new approach to the control of a nonlinear, time-varying process is proposed. It is based on a recursive version of the fuzzy identification method and predictive functional control. First, the recursive fuzzy identification method is derived, after which it is used in connection with fuzzy predictive functional control to construct an adaptive fuzzy predictive functional controller. The adaptive FPFC is then tested on a nonlinear, time-varying, semi-batch reactor process and compared with the standard FPFC, which uses non-adaptive fuzzy model. The simulation results are promising; they indicate that the control of time-varying, nonlinear processes with the FPFC can be improved with the use of an adaptive fuzzy model. An improvement in reference tracking and disturbance rejection can be observed, but the main advantage is the reduced number of switchings between hot and cold water. This is an important improvement in the case of real applications.
机译:本文提出了一种控制非线性时变过程的新方法。它基于模糊识别方法和预测功能控制的递归版本。首先,推导了递归模糊识别方法,然后将其与模糊预测功能控制结合使用,构建了自适应模糊预测功能控制器。然后在非线性,时变,半间歇式反应堆工艺上测试自适应FPFC,并将其与使用非自适应模糊模型的标准FPFC进行比较。仿真结果是有希望的。他们指出,通过使用自适应模糊模型,可以改善FPFC对时变非线性过程的控制。可以观察到参考跟踪和干扰抑制方面的改进,但是主要优点是减少了热水和冷水之间的切换次数。在实际应用中,这是一项重要的改进。

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