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Control of a reactive batch distillation process using an iterative learning technique

机译:使用迭代学习技术控制反应性间歇蒸馏过程

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摘要

Quadratic criterion-based iterative learning control (QILC) was applied to a numerical reactive batch distillation process, in which methacrylic anhydride (MAN) is produced through the reaction of methacrylic acid with acetic anhydride. The role of distillation is to shift the equilibrium conversion toward the direction of the product by removing acetic acid (AcH), a by-product of the reaction. Two temperatures at both ends of the column were controlled by individual control loops. A nonlinear PID controller manipulating the reflux ratio was employed to regulate the top temperature at the boiling point of AcH. A constrained QILC was used for the tracking of the reactor temperature. A time-varying reference trajectory for the reactor temperature that satisfies the target conversion and purity of MAN was obtained through repeated simulations and confrimation experiments in the pilot plant. The QILC achieved satisfactory tracking in several batch runs with gentle control movements, while the PID control as a substitute of the QILC in a comparative study exhibited unacceptable performance.
机译:将基于二次准则的迭代学习控制(QILC)应用于数值反应式间歇蒸馏过程,该过程通过甲基丙烯酸与乙酸酐的反应生产甲基丙烯酸酐(MAN)。蒸馏的作用是通过除去反应副产物乙酸(AcH),将平衡转化率朝产物方向转移。色谱柱两端的两个温度由单独的控制回路控制。使用控制回流比的非线性PID控制器来调节AcH沸点的最高温度。约束QILC用于跟踪反应器温度。通过在中试装置中进行重复的模拟和约束实验,获得了满足目标转化率和MAN纯度的反应堆温度随时间变化的参考轨迹。在比较研究中,QILC在几次批次运行中均实现了令人满意的跟踪,而PID控制作为QILC的替代品却表现出不可接受的性能。

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