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Model predictive control of shell benchmark process

机译:壳基准测试过程的模型预测控制

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Simultaneous control of overhead and bottoms composition in a binary distillation column using reflux and steam flow as the manipulated variables often proves to be particularly difficult because of the interaction inherent in the process. The development of model based control (MPC) theory in the past 20-25 years has provided a framework which caters for the above distillation control problem. MPC technology has penetrated a significant portion of the process industries and harvested large economical benefits. In this paper model predictive controller is proposed for the control of a two-input-two-output high purity shell distillation column. The use of this controller allows for the impurity and pressure control to be decoupled while simultaneously satisfying column operating conditions. For this purpose the dynamic process model is identified using classical least squares technique.
机译:由于在过程中固有的相互作用,使用回流和蒸汽流作为调节变量来同时控制二元蒸馏塔中塔顶馏出物和塔底馏出物的组成通常被证明是特别困难的。在过去的20-25年中,基于模型的控制(MPC)理论的发展为解决上述蒸馏控制问题提供了一个框架。 MPC技术已经渗透到过程工业的很大一部分,并获得了巨大的经济利益。本文提出了一种预测模型控制器,该控制器用于两输入两输出高纯度壳蒸馏塔的控制。使用该控制器可以使杂质和压力控制解耦,同时满足色谱柱操作条件。为此目的,使用经典最小二乘法来确定动态过程模型。

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