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Hybrid intelligent control scheme of a polymerization kettle for ACR production

机译:ACR生产用聚合釜的混合智能控制方案

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Polymerization kettle is the key controlled plant in ACR (Acrylate Copolymer Resin) production, which is a nonlinear time-delay system with parametric variance. However, modeling difficulties make the plant dynamic model poorly defined. A hybrid intelligent control scheme including an intelligent predictor is designed for this complex plant based on time-delay compensation theory. It consists of a Smith neural-network predictor and a self-adjusting-scaling-factor fuzzy logic controller. The simulation experiments verified the performance of our proposed system in two scenarios: one with invariant parameters and the other with time-varying parameters. Moreover, the comparison to other three typical control methods including Smith PID, Smith neural-network PID and Smith fuzzy logic control is also presented, which demonstrates that the proposed control scheme has satisfactory effect. Even when the system parameters vary with time, the proposed system still gives superior performance and improved robustness.
机译:聚合釜是ACR(丙烯酸酯共聚物树脂)生产中的关键受控设备,ACR是具有参数差异的非线性时间延迟系统。但是,建模困难使工厂动态模型定义不充分。基于时延补偿理论,为此复杂工厂设计了一种包含智能预测器的混合智能控制方案。它由一个Smith神经网络预测器和一个自调整比例因子模糊逻辑控制器组成。仿真实验验证了我们提出的系统在两种情况下的性能:一种具有不变参数,另一种具有时变参数。此外,还与史密斯PID,史密斯神经网络PID和史密斯模糊逻辑控制三种其他典型控制方法进行了比较,表明所提出的控制方案具有令人满意的效果。即使系统参数随时间变化,所提出的系统仍具有出色的性能和更高的鲁棒性。

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