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Modelling and Advanced Control of a Binary Batch Distillation Pilot Plant

机译:二元批量蒸馏试行厂的建模与先进控制

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Based on theoretical analysis of dynamic mass balance and vapor-liquid phase balance, a state-space model of a methanol/water binary batch distillation pilot plant was developed with an empirical temperature-composition relationship model to estimate the composition of the top distillate. As the nonlinearity and non-stationary characteristics of the batch process, the development and experimental test of four kinds of advanced control strategies including predictive control based on state space model, fuzzy logic control, gain scheduling control, hybrid control strategy combining gain scheduling and fuzzy logic control were carried out for the inferential composition control of the binary methanol/water batch distillation column top products. Batch distillation experimental studies showed that these advanced control strategies all gave good control results and a comparison of their performance with ordinary PI control was presented. The experimental results showed that all four advanced control methods were effective for the control of the binary batch column, and their performances were quite similar, but all were much better than ordinary PI control. The gain scheduling control strategy gave more accurate control result, and the model predictive control strategy achieved higher production rate.
机译:基于动态质量平衡和汽液相平衡的理论分析,利用经验温度 - 成分关系模型开发了甲醇/水二进制批量蒸馏飞行员植物的状态空间模型,以估算顶部馏分馏分的组成。作为非线性和批处理的非静止特性,开发和实验测试四种先进控制策略,包括基于状态空间模型的预测控制,模糊逻辑控制,增益调度控制,混合控制策略结合增益调度和模糊对二元甲醇/水批蒸馏塔顶部产物的推理组合物进行进行逻辑控制。批量蒸馏实验研究表明,这些先进的控制策略均得到了良好的控制结果,并提出了与普通PI控制的性能的比较。实验结果表明,所有四种先进的控制方法都是对双批次控制的对照,它们的性能非常相似,但所有这些都比普通PI控制更好。增益调度控制策略给出了更准确的控制结果,模型预测控制策略实现了更高的生产率。

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