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Modeling and fuzzy controller design for ACR polymerizing-kettles

机译:ACR聚合釜的建模与模糊控制器设计

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Temperature control of polymerizing-kettles is the key part of ACR (Acrylate Copolymer Resin) production. However, it is very complex to create a mathematical model for the polyreaction process; the modeling remains a difficult task in polyreaction engineering. In this paper, qualitative characteristics of emulsion polyreaction mechanism are analyzed, and with the statistic characteristic on how polymerization speed varies with transformation rate, the analytical model of ACR polymerizing-kettles is created, which turns out to be a nonlinear time-varying system with time delay. For this kind of plant, we design a parameter-self-tuning fuzzy controller based on Smith predictor and carry out two kinds of simulation experiments on different conditions: one with invariant system parameters and the other one with time-varying ones. Compared with the conventional control method, the results demonstrate that the control method proposed in this paper is good at interference resisting and effective for precise temperature control of the polymerization.
机译:聚合釜的温度控制是ACR(丙烯酸酯共聚物树脂)生产的关键部分。但是,为多反应过程创建数学模型非常复杂。在多反应工程中,建模仍然是一项艰巨的任务。本文分析了乳液聚合反应机理的定性特征,并根据聚合速度随转化率变化的统计特征,建立了ACR聚合釜的解析模型,结果证明该模型是一个非线性时变系统。时间延迟。对于这种工厂,我们设计了基于Smith预估器的参数自整定模糊控制器,并在不同条件下进行了两种仿真实验:一种具有不变的系统参数,另一种具有时变参数。与常规控制方法相比,结果表明本文提出的控制方法具有良好的抗干扰性,对聚合的精确温度控制有效。

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